Showing posts with label register. Show all posts
Showing posts with label register. Show all posts

Tuesday, March 26, 2024

Fixing Hapy Furnace (part 2)

Picking up where I left off the last post, Hapy has an operational furnace again.

Fuel Pump Swap
As I mentioned in my last post, the fuel pump which originally delivered with the heater/furnace would not work when I tried to bring things back to life. I splurged and bought a more expensive "quiet" model for $50US rather than another standard pump for $20US. I figured quieter or not, the more expensive pump may have better parts in it, and it may last longer whether it is quieter or not. Or it was just a marketing gimmick and I got took. Let's chalk it up to the cost of an experiment.

The old fuel line path was relatively simple. The "hard" (clear but firm plastic) lines that delivered with the furnace had short (50mm / 2-inch) stretches of fuel hose between them and the pump. The pump was suspended from a cross beam by the included rubber mount held in place by a single sheet metal screw. After a few turns with a screwdriver, the pump was on the ground. A few more and the fuel lines were removed from it. The supply fuel line started dripping fuel after a few seconds, so I caught it with a pan. The line on the pressurized side was completely empty, so no drips. I simply reversed the removal: added the rubber mount from the supply end of the pump, added the supply fuel line, suspended the pump from the cross beam and then added the pressurized-side line.

Prime and Fire Up
The Afterburner has a control page where you can direct only the fuel pump to fire up. This allows you to get fuel all the way to the furnace without the glow plug turning on (drawing the battery and maybe burning out the glow plug). I had not connected the pressure line to the furnace, but I wanted to clear the lines of any bad fuel, so I moved the pan under the dangling hardline and triggered the Afterburner to prime. Within a minute of the prime starting, fuel started spurting out the end of the line. It took longer than I expected it to, but perhaps that is an indication of how little fuel these units actually consume. Once the fuel leaving the pressure line looked like the fuel supplied at a filling station, I stopped the prime function and connected the hardline to the fuel hose dangling from the furnace.

While the pump was slightly larger than the original, it did not seem much quieter during the prime. Of course, I hadn't heard it pump in a couple of years, and memory is a funny thing. I do recall that when the furnace was running, I could hear the tick-tick-tick of the fuel pump over the whoosh of the furnace. With this in mind, I set the furnace to start. I did not want to consider the experiment with the new thicker, dedicated wiring yet, so I left the battery tender hooked up. At no point did the battery fall below 13.5V so either the tender was working hard, or the new wiring is a hit.

Regardless, the glow plug got lit, the fan started spinning and after 2 or 3 minutes the furnace ignited. This felt like a considerably longer period of time than before. Perhaps the priming was incomplete and I needed to prime again after connecting the hose to the furnace. Perhaps it took time to ignite simply because it had been so long. Once it ignited, a huge plume of smoke poured out of the little muffler. There was virtually no wind, so the cloud grew and sat slowly obscuring first the rear end of the bus and slowly 2/3 of the bus before a light breeze broke it up. After a few minutes, the cloud dissipated and the exhaust emission was reduced to nothing. All that remained was a light smokey haze inside the bus. I regret not taking a picture of that.

Noise Observations
While the temperature inside the bus slowly crept up from 55*F (13*C), I noted the noises. I could only hear the fuel pump ticking inside the cabinet where the furnace is located and even then, only when I stuck my head into the cabinet. I think the pressurized line is transmitting it. I stuck my head into the rock-n-roll cabinet above the spot where pump is actually installed and could not hear it. Maybe this new pump is quieter. Then, I moved outside where in the past I could clearly hear the pump from several feet away, even from the passenger-door side. I could not hear it, but I could hear the furnace whoosh. Of course, my muffler-ing of the furnace is different this time, having removed the second small rectangular muffler and the motorbike muffler. Perhaps the pump is no quieter, but the furnace is that much louder. To determine if the muffler configuration is a variable, I decided I will conduct another test at a different time, after re-attaching the other muffler bits. I had thought about bringing them along for while-parked use, and maybe I will need to, out of respect for our festival-going neighbors. In the past, I took decibel readings, but they were for while the furnace held a temperature, not during temp catch-up (full blast).

I will continue to experiment with noise readings and post if I find any readings are different than they were 4 years ago. I expect that once I put the extra rectangular and motorbike mufflers on, the readings will be what they were before. The only real mystery to me is whether the fuel pump can be heard over it. At this point, though, the pump seems significantly quieter.

Thanks, as always, for following along-

Tuesday, March 19, 2024

Fixing Hapy Furnace (part 1)

Having finally arrived at a place where we have some heat while we're moving, I felt motivated to fix the heat for when we are standing still. Today's post covers most of the saga of getting a Chinese diesel heater operational again. Spoiler alert: the heater isn't running by the end of this post.

Brief History
Back in the early days of CoViD, I installed one of those Chinese diesel parking heaters into Hapy (See Parking Heater 1, 2, 3, 4, 5 and Final for deep detail). While I was able to run it a few times, I found that the heater pulled the voltage way down on whichever battery was connected to it. I tried to solve by providing multiple batteries to source from: one to start, one to run, but switching from battery to battery seemed like a bad practice. I had other priorities, so I just let the furnace sit unused. When I did the sound deadening effort and the luxury electrical re-wire, I dismantled the cabinet which housed the furnace so I could get sound deadener underneath it and electrical cables through it. This meant dismantling part of the furnace too. Later, when the band wanted to use Hapy for the album cover, I removed the furnace exhaust so it would not appear in pictures. So, I had a furnace without an exhaust, and would draw way too much juice.

Electrical
Over time, and with more learning about electrical stuff, I have concluded that the wire used to convey electricity but perhaps more importantly the wire for a ground were far too thin. It was due to these thin wires that the voltage would drop so badly as the furnace attempted to compensate. Wires which would have been barely up to the job had the battery been sitting right on top of the heater will definitely NOT be up to the task once you move the battery a few feet away. This is exacerbated by running the ground to the body of the bus instead of back to the battery. The ground location should not matter as much, but I'm citing it as a participant cause anyway. So, addressing the electrical came first after removing the furnace from the bus.

A small harness of wires leaves the furnace body and enters a black plug (see picture on the right). The harness that ships with the furnace includes a pigtail that clicks into the furnace black plug. To my eye, the red and black wires in the pigtail are not nearly as thick as the wires leaving the furnace. This probably saved the manufacturer a few pennies, but the amp draw issue starts right there (and in my case got worse). So, I cut the main power and main ground wires from the furnace black plug and put male/female wire ends on them (12V/ground respectively). I made them different so I couldn't accidentally plug it in backwards. I then prepped a thick 2-wire black/red cable with matching wire ends, and routed it over to the luxury battery. At the battery end, I added a ring terminal for the ground and added a 20Amp fuse into the positive side before adding a ring terminal on that end. I left things detached as I switched to preparing for the exhaust.

Exhaust
From under the bus, it was clear that I had not made the hole(s) large enough for the exhaust, intake and fuel to be easily maintained. Quite the contrary, I had installed it such that once it was all together, it would have to all come apart to fix anything. Frowny-face. So, I started by cutting a 4-inch square hole into the lower belly pan. Many buses do not have these, but I got lucky. Anyway, with the hole cut I could see where the furnace sat, and noticed that the exhaust was getting pinched by the too-small hole in the floor as the exhaust left the furnace. So, I went topside and expanded the upper hole both in the floor of the cabinet and the steel floor of the bus. With the larger hole, the exhaust easily fits and things could be maintained from below. Still, I did what I could on the furnace itself before lowering it in: Connect a 6" long stretch of fuel line, attach a small circle of window screen to the intake (so bugs and pebbles don't get in) and then attach maybe a foot of heat-wrapped exhaust. I set the furnace in place and attached a small subset of the muffler arrangement I had used before: just one rectangular muffler. I may bring the expanded muffler set up for use when we are in tighter camping spots (like festivals), so we can bolt-on some extra quiet. I mounted the muffler to the underside of the frame rail, with the outlet pointing rearward and slightly away from center (picture on the right).

A keen eye can see some fresh Rustoleum primer + paint above the muffler where I discovered some rust had eaten all the way through the body. When I was working on the other stuff I ground the metal down, removing the rust, but exposing the holes. Sadness. That rust traces back to when this bus had a small vent window directly above this spot. That vent window was badly leaking and the rust had already been forming to the point of marring the paint when I bought this bus over 20 years ago. I eliminated the vent window in 2015 (See Calling "glass") with a window I purchased from BusBoys in Redding, CA in 2009. Some things move slower than others.

Fuel
I shifted over to fueling at this point. The fuel line that had been between the included "hard" line and the furnace had breeched, probably when I did the sound deadening. The fuel in the line looked dark, so I dropped the line into an empty pail, and figured I would prime the fuel system, and purge the bad fuel at the same time. Unfortunately, the fuel pump is no longer functional, so I am waiting on a replacement to finish this job.

Afterburner
Back when I first did this job, I bought an Afterburner from the guy who hand builds them in Australia. Apparently, there are people building knock-offs, eating into his business, since they basically have cloned his work. So, if you are looking at getting the much nicer controller for your parking heater, please connect with Mr. Jones in Australia and get the real deal. Anyway, with the Afterburner, I tried to prime the fuel system, but the fuel pump wouldn't respond. When I unplugged the pump, I got a code; I concluded the wiring to the pump was good but pump was bad. So I ordered a new, supposedly quieter, one. We'll see. While I was clowning around with the Afterburner, I got it onto my home network, downloaded the newest firmware and wandered around the new-to-me website that the Afterburner hosts. It's really cool. I am looking forward to triggering the furnace to warm the bus from inside. For reference, here is a link to the user manual.

This is as far as I've gotten. I am waiting for a new fuel pump to arrive. I need to purge the old lines of nasty fuel, and install that new pump. I expect there will be other discoveries, and I need to rebuild the cabinet innards. There's always opportunities to improve things. Anyway, thanks, as always, for following along-

Tuesday, October 18, 2022

Vehicular Paperwork

We continue on NewOldHouse, of course, but there is little interesting to talk about. We have been preparing the interior for paint, and the exterior for the inevitable arrival of autumn rains. I'll describe some of these efforts, but today I renewed the license plates for Hapy, and I thought that might be more interesting. Yeah, like the difference between watching paint dry and watching grass grow....

Prepare for Paint
As with anything paint-related, it is all in the prep work. We started with laying paper on the refinished wood floors and then checking for nails, screws, picture mounts and holes in the walls. Before we got after repairing the holes, the walls and ceilings were washed and rinsed. Then, we solved the holes with spackle. Next, we masked the windows and caulked seams. After removing the light fixtures, I masked those, and the exposed electrical outlets and switches. This took all of 30 seconds to type, but it has taken many days. On the right, here, is the only picture I've taken inside in a while. This is not a terribly informative picture, but is what is.

Prepare for Rain
The seasonal rains are arguably late this year. I usually reference Columbus / Indigenous Peoples' Day as the normal start of rainy season in Northwestern Oregon. Today, it is still sunny and dry. This will not last and we have some things to solve quickly.

First, NewOldHouse has 4 foundation vents which are below grade (meaning the garden dirt is above the bottom of the vent). Recall we had the crawlspace cleared of debris and the vapor barrier replaced. These below-grade vents will allow water to drain into the crawlspace, upsetting that clean and dry space. To remedy, I started by digging out around the vents down a few inches below the concrete lip. I will add a sheet of clear Lexan to the outside to cover the bottom half of the vent opening and seal it with clear caulk. Unfortunately, some of the existing grates are not small enough to prevent mice from getting through... though they fortunately aren't. So, enter Orkin to chase the buggers and replace the grates. Fortunately, they solved all of the other possible access points when they diagnosed the problem; they just ran out of tight-mesh grate stuff. So, once Orkin solves for those grates, I will apply the Lexan to keep any water potential away.

Other than keeping rain out of the house, I needed to set up the carports so Zed stays dry. Recall, Zed still does not have glass installed, so weather can get right in. The car ports are easy to dis-assemble and reassemble, so moving them and getting them set up was not hard. I have discovered, though, that the plastic sheeting is not hardy enough to withstand year-over-year sun and rain battering. They are starting to split, so I will need to replace them more-than-likely before this winter reaches it's end. Still, for now, they are up and the one closest to the NewOldHouse is ready for Zed. Since Zed is not yet a driver, I may be towing him over with the lawn tractor Boo bought from the prior owner. I expect a full comedy of errors that will result in a future post. This picture on the right shows a few things. First, that post is from the carport and that boot is Boo crawling under the house through one of the foundation grates. This one is pretty much at ground level, so I may create a little berm at it's leading edge to keep water from trickling in. That grate is the only entry to the crawlspace.

Vehicle Registration
Now, for what I intended to write about: renewing the registration for Hapy. As has been well documented, I have a few cars. Only one of them is from before 1974 when motor vehicle emission testing became a thing. So, Hapy doesn't need a smog test, but like everyone else, we need to renew his plate stickers every other year. This year is that year. So, I went to OregonDMV.com to renew him and noted that my fee is based on his projected mpg, based on model year, etc. Apparently, the 1972 VW camperbus was expected to get 19mpg or lower. My fee was then driven off of that fact. truth-be-told, I was not getting 19mpg before I started the engine swap, so their assignment was fairly accurate. Curious to see if my fee would be measurably better if my mpg was better, I went looking for their schedule. It turned out that the better your mileage, the more you pay. I suppose this is to offset the loss in tax they get from you when you buy fuel. That just proves that the man will get you coming or going; either way they are gonna get theirs. I had thought about doing the paperwork to tell the state that Hapy was running 30+ mpg on diesel, but I have to pay a fee for that too. And then, I would be paying and extra $30 to register him every 2 years from then on. Clearly, there is a counter-incentive to be transparent.

Another thing worth noting is how low the fee is for car rental companies. They can register almost 2 cars to our one. That hardly seems fair. We individuals need transportation sometimes, for life conditions outside our control. Car rental companies are buying and renting out cars as a business, and the person renting the car is paying the fuel taxes when s/he fills up. I suppose the rental car companies get the sweetheart deal because they can influence our representation in Salem better than we individuals can. Anyway, enough soapbox, it just seems like we are underwriting the rental car companies in the form of a corporate handout. Must be nice.

I meant to publish this last week, and time got away from me. We had a bunch of adventures over this past weekend. I will write them up for sharing in the next few days. thanks, as always, for following along-

Tuesday, February 9, 2021

Hapy Daily Driving

Well, that title might be overstating it a little bit. To clarify: Hapy is now capable of driving on a moment's notice. With the CoViD safer-at-home, I haven't been going anywhere. I may not have had an operable car for most of the last couple of months, but the lockdown has meant I haven't really needed one either. Today, I'll cover the little things that needed to be buttoned up after the big re-wire.

Reverse Lights
I mentioned the reverse lights at the end of the Electrical Gremlins saga. I had it wired up to a somewhat mystery switched 12V source before. When I tore the old wiring rats nest apart, it was left out of the new wiring. This resolution was fairly easy. Back when I set the mystery wire-up aside, I left the plastic-snap-shut fused wire in tact. So, there was just a plain bare wire to deal with. I fished it up into the spare tire well / wiring compartment from the engine bay. I spliced the wire into the switched source splice coming from relay 109 so the reverse lights will only come on when the computer thinks we are in "RUN". Since it already had an integrated fuse, this was a simple splice effort.

Headlight Flasher
When I was chasing the cause for my lack of amps during P0121 testing, I tore into the dash. I thought I had bumped something loose, and there are a bunch of things in there that could have shaken apart. Well, I didn't bump anything loose causing that issue, but I did bump something during that exploratory. Haha. During the Summer of 2020, I finally got my high-beam / low-beam flasher relay to work. It was because the replacement relay requires a source of 12V to pin 30. This pin wasn't on the old relay, and there is no wire leading to that pin in the original fuse box. I solved that before, but when I was looking for the buzzing noise during the P0121 effort, I pulled that relay and the wire heading to that pin fell out of the fuse box. I didn't notice that then. During post-testing, I discovered that the flasher no longer flashed. I found the wire, re-oriented it so it would not fall out, and returned things back to their prior cleaned-up state (zip-tied fuse-box). Hi-beam flash/relay works.

Defroster
Also in the Summer of 2020, I installed a defroster. Sort of. The defroster solution was moving the Vanagon rear heater under the belly, routing coolant along the driver side main beam and plumbing into the old air channel from just behind the front crossbeam. The air source was an experiment pulling from the old rear floor vent. The mechanical connection of the hoses to the heater was poor, and the experiment fell apart. This source needed to be remedied. Also, the switch was not operating the fan settings correctly. This was caused by poor quality wire connectors, so once the 3 at the switch and the 2 near the heater were replaced, we have a 3 speed fan again.

I decided that rather than solve for a cabin-source of air for the defroster, I would just remove the experiment for now. I have an idea for a source, but other cars need my focus. So, I removed the air supply hoses and called it good enough for now.

Mop Up
During all of the wiring work, the inside of the bus became considerably disheveled. It was one part shed, one part tool box and no part looking like a vehicle. This was easy to resolve, but made a huge difference in declaring the end of the work. The lot couch is back installed as a middle-row bench seat, for example. The rear speakers are hooked up and placed for sound again. After a quick trip with the shop-vac to get the wire-strippings and other fallout from all the work vacuumed up, he looked nearly ready.

I ran a test of the furnace, confirming that it would run on either the accessory battery or the main. It will, but the current draw for the glow-plug is so significant that I'm not sure I will want to start that heater if I am not running at least a float charger to the sourcing battery. Still, it moved the internal temperature of the bus from 43*F to 68*F (6*C to 20*C) in about 15 minutes. For the fuel-minded, it took about 500ml (or ~0.13US gallons or about 2 cups). As I understand it, maintaining the temperature requires far less fuel, so the consumption at that point dropped way off. I left it running for about an hour and the total consumed ml was about 530ml or 30ml (1/8 cup) for the remaining 45 minutes of keeping the bus warm.

I took one last step: I installed plastic kick panels I ordered like a year ago against the rear of the nose of the bus. Just like that, the cab looks like it is not an active project. It looks fairly clean now, actually. They install and remove easily, and once snapped in they really do not appear to need much more to hold them in place. The guy who makes them suggests poking holes through and screwing them into your bus. I might use Velcro, but I'll withhold decision-making until after we have had a few drives to see if they rattle or not.

Getting Legal
This last thing was actually one of the first things I did for Hapy after I set Zed aside. In fact, I think it was the registration that got me thinking about Hapy in the first place. His registration came due, and because of CoViD-19, I had to do it remotely. Since he is too old for smog and Oregon does not have inspections, I have been renewing his registration online for a few years. Still, this time I did the online steps in October 2020, but did not receive the stickers for his tag until January 2021. This used to take a couple of weeks at most. It sure felt good getting those stickers on his plates, though.

Test Drive
With the tags updated, the wiring fresh, the defroster responding, furnace functioning, etc... Hapy appeared nearly ready to be pressed into service. We just needed a test drive. For that, I did my usual neighborhood lap through a series of side streets out to the main drag, a quick 1-mile straight shot on that major street and then turning back into the side streets for home. As expected, Hapy was fairly peppy and responsive. He sounds great, and did not suffer any P0121 issues. There were a few stutters, but no codes, so I chalked that up to old diesel. That will solve with some snake oil and a fill-up. Considering that Hapy had not left the driveway in over a year, this drive was significant, albeit short.

Alt-Light
The battery light came on when the engine was revving low during the test drive, leading me to think that the unsettling "pop" noise I heard when the wiring was wrong (See Chasing the Hapy Electrical Gremlins - Part 6) was the sound of my alternator frying. This light had been popping on during testing, so the fact that it returned during the road-test honestly just reminded me. Before I jumped into anything, I in-bus tested the alternator: I alligator-clipped a fused wire to the alternator output and ran that wire on the ground up to the cab. There, I electrical-taped the bare wire to the positive probe of my multi-meter to free a hand. I set the negative probe into a small bolt-hole in the driver door frame for a good ground. First, a good base reading: 13.5V. Cool. I started the engine and it dropped down to 12.4V. Solid. With my hand on the go pedal, I revved the engine and watched the voltage climb up and down peaking above 14V. So, the alternator is fine. Since I have been running without an ALT/GEN light for 10 years, I could just ignore that light... Nah, I just can't do that. I figured that the bulb must simply be connected to the wrong wire of the 2 in the ALT plug.

I had spliced into the wire heading to the computer (DFM - or Digital Field Monitoring), and it needs to hit the one that routes to the cluster (L - Lamp). Simple fix: I cut the splice from the donor main harness to the 6-wire cable, and tied it into the other wire from the plug just upstream from the 4-pin plug. While I was back there, I added ring terminals to the sensor wires for the oil pressure and oil idiot light. There remains some wiring tidying I need to do on the driver's side, so I'll cut out the rest of the DFM-sourcing wire when I'm in there. 

As much as I'd like to say that once I completed, I took another test drive... I can't. I did test start and engine-rev in-place, however, just to see that ALT light wink out (which it did). Why did I not drive him? Well, remember Gramps (1996 VW Jetta 2-dot-slow from my folks that we gave to K2)? He re-appeared with a failed throw-out bearing after the first test drive, but before I'd solved the ALT light. So, I will have to juggle the herd to get Hapy free for a drive. And, you can probably guess what I'll be working on next.

That's it for today. While I may not need to go out much due to CoViD restrictions, I now have my beloved turbo-diesel powered microbus available-ish for whenever the need arises. While there are lots of little things I could tweak on Hapy, none of those things would prevent me from taking a drive. Sweet, sweet success. Thanks, as always, for following along.

Tuesday, May 26, 2020

Parking Heater - Final

In March, I posted a series about installing one of those inexpensive Chinese Diesel Heaters into Hapy, the TDI-powered microbus (See Parking Heater 1, 2, 3, 4, and 5). I have completed the little things that I had left undone, so today's post takes a break from the oil temperature and pressure stuff and wraps up the heater.

Power Switch
I had left off with a power switch wired between the main (drive) battery and the heater. It was dangling around in the cabinet behind the old refrigerator-turned-cabinet. I added a wire to the luxury battery housed under the rock-n-roll bed through the fuse box I have controlling circuits to that battery. I also bored a hole into the wood support I have in that rear cabinet holding the old westy battery maintenance panel. I don't really use that panel, mostly because I haven't finished wiring up shore power to charge the luxury battery. Anyway, I punched a 5/8" hole through and fed the switch through, nutting it down. It looks fairly finished now; it just needs a label.

Cabinet a Cabinet Again
floor back in.
The heater sits on the floor of the old refer cabinet. I only need about 7 inches of clearance, but I gave it 8-1/2 so I could add a layer of insulation later. At the 8-1/2 inch point, I attached 2 wood supports running along the front and rear walls. On top of these, I put a thin run of foam to reduce any noise or rattling, and then settled a rectangular board for a cabinet floor. In the future, I will probably attach some kind of insulation to the bottom of that floor. For now, it is just a bare piece of wood.

The smaller cabinet can still hold quite a bit of stuff. I re-stowed the zombie-apocalypse Red Cross first aid duffel, some paper products, and a few other fairly important yet random things (playing cards and a cribbage board, for example).

Afterburner
Afterburner installed
Afterburner unpacked
The Australian guy (Ray Jones) who makes the Afterburner appears relatively unaffected by the CoVid-19 lockdown, so he was able to process my order and sent it to me. Bear in mind, he is a one-man operation, so the waiting list can be rather long. I let the package sit for a few days in quarantine (on concrete garage floor) before digging into it. The included install instructions are easy to follow, and all of the parts are easy to identify. I had it installed, complete with wire routing and final wall mounting in a couple of hours. I have only scratched the surface of what this thing can do, but I am very impressed with it so far. In my opinion, the white case and grey buttons looks great. Like so many other improvements, this shows me how much I can raise the aesthetic simply by adding carpeting to the wall cards. All of the scratches in the picture on the right, here, highlights how overdue this is.

Afterburner operating
Okay, today's post was a little light, but all combined, those short passages took me hours to complete. More important, the heater is complete. Once I have the Afterburner figured out, I'll be able to pre-heat the bus in the winter time, have the heater turn on based on a schedule, shut off based on temperature, etc. Basically, it will have the same capabilities as a home thermostat... but in a 50 year old VW bus. This heater install was originally so we could get warm during the summer solstice music festival in Bend (4Peaks) which would have been next month had the CoViD pandemic not happened. Assuming everything is back to normal in June 2021, we will use it there. Maybe, just maybe, next winter I will be able to achieve my old dream of taking Hapy to the mountains for some fun in the snow.... now that we have a way to get the cabin warm. Hmm.. maybe I need to figure out how to add a defroster first.

Thanks again for following along. More next time-

Tuesday, March 3, 2020

Parking Heater (Part 5)

How this concept took more posts to cover than the rebuilding of the front end of the MGB, I don't know. But, here we are, a fifth post about it. Wow. Let's start with re-capping what the prior 4 posts have covered.
Part 1 - why I'm doing this and what's in the box. Also some early, uninformed ideas about needed upgrades
Part 2 - planning, ripping up the old refer cabinet, placing the fuel line and fuel pump
Part 3 - planning a heat register, connecting the fuel line to the heater, sourcing the power and then an air filter boondoggle.
Part 4 - connecting the exhaust, installing the heater unit, completing the fuel system, completing the electrical and the heat register

So, what's left? Routing the exhaust, the inbound combustion air and running some tests.

Exhaust Wrap'd
fuel pump gets vertical
Until now, the exhaust has simply flopped on the ground. Obviously, that is not a viable long-term solution. So, after watching some interesting video footage of various muffler styles (courtesy of John McK), I made some decisions. JohnMcK stressed that the intake and exhaust must be left as open and clear as possible for long-term health of your heater. It was this advice that had me abandon any muffler wadding. He was also confirming what Hal said. JohnMcK was the source of the info to orient the pump as vertical as possible as well (see picture to see how mine is now oriented). I was going to conduct a bunch of noise experiments, but JohnMcK already did that for us. I encourage you to watch his videos; he is super-dedicated to these things.

So, post JohnMcK love-fest, I decided to use 2 of those little thought-they-were-garbage "muffler"s. Based on JohnMcK's findings, they each drop the dB by about 10% and when placed in series that continues (so 60dB drops to 54 which then drops to around 50). I had already acquired a flow-thru motorbike muffler, and John tested one of them also. They didn't seem as impressive as they looked, but I intend to use one anyway, since it will help to hide the others.

only shiny things in sight
The "muffler"s need to hang vertically because they each have a drain to let out moisture and/or unspent fuel. Unfortunately, they are hard to hide, especially since they are shiny and there's practically nothing shiny on this bus. The underside is particularly NOT shiny, so these "muffler"s will be very visible. Consider that the heater exhaust exits the bus a foot or so forward of the rear driver-side wheel, fairly close to the outer edge/lip along the side. Because of the short distance between the exit point and the wheel well, in order to route sound muffling, the pipe needs to run forward and then turn back on itself (exhaust must point rear and down or the air-flow from driving will create back-pressure). JohnMcK stresses the importance of having no more than 270* of bend in your exhaust or you may create too much back-pressure. So, this gets interesting. I planned the locations of the "muffler"s and pre-drilled holes in the belly pan to hold the "muffler" hangers. They are about 6 inches inboard of the outer lip.

wider context view
As the pipe leaves the bus, it turns 90* towards the front. I cut it off at that point with a hacksaw, cutting the heat sleeve with scissors first. With the help of a stainless steel reducer (3/4" to 1" with the 3/4 inch inside the cut pipe), I mated the cut-off pipe to 2 "mufflers" in series, connected by a cylinder of HVAC flashing held in place with pipe clamps. Yes, that sounds hinky, but it is actually quite solid. To the end of the second muffler, I slid on the clean end of the included exhaust pipe I had just cut off over the "muffler" end, leaving the ragged cut end free. I added more heat sleeve and another clamp at the "muffler". I then turned the pipe into a "J" so it faced more towards the rear and stopped to test, and to get noise readings. The pictures here paint a better picture than my prose.

Inbound Combustion Air
Apparently, these heaters don't need an air cleaner. I find that very hard to believe. Still, going with it, I decided to remove the air hose from the intake side of the heater, using the large cavity between the floor and the belly pan to act like an insulator against really bad stuff getting in there. I was having fit issues anyway, and this removed the thing that was in the way. I will be attaching a bit of window-screen to the intake, but for testing purposes, it currently has no filter. That's how JohnMcK does it without a filter, so I'll not argue. As it is, there are a few spots where air could get in, but only one 1" diameter opening so the route to the inside of the heater would require some form of intelligence to get there.

Testing
motorbike muffler added
With the exhaust completed enough for testing, I fired up the heater and let it run. I checked dB levels (reads as "quiet house" within a few feet of the exhaust, bouncing around 55dB) and wandered around for a sense of sound impact. I am unable to hear the fuel pump at all outside of 15 feet (5 meters) away. The sound of the heater running disappears into outside noise after another few feet. Within the bus, the pump cannot be heard over the sound of the fan except at the lowest setting. I let it run for about an hour and the temperature inside the bus climbed from 12C (about 54*F) to 20C (68*F), while at the 3 pulse-per-second setting, around the mid-point. I kept getting in and getting out, leaving the slider open sometimes, etc, so this is not scientific. Still, since the bus had not been over 60*F since last Summer, I consider a nearly 15*F increase a fairly significant feat. It will be interesting to see how effective it is when I really just let it be. One thing worth noting: the exhaust has no smell. None, and no smoke either. I cupped my hands at the exhaust outlet and breathed it in just to see if I could get any smell. Nope. That's efficient.

My last test was to fire up the engine of the bus to confirm that I did not interrupt the fuel supply to the engine. Obviously, that's kind of important and arguably could have been done sooner. Honestly, I wasn't sure he would fire up, but he did on the first try. Good boy, Hapy. I drove around the cul-de-sac but he dropped into that 1200RPM can't-read-the-throttle mode, so I parked him again. Looks like he's trying to tell me that the next thing needs to be resolving his electrical.


Well, I think that's enough talk of the Parking Heater. It really isn't completely done. I did the install of the motorbike muffler with exhaust hangers to help make the exhaust look nicer. It does end up a little quieter, now in the low 50's at the boost or high-power setting rather than low 50's at mid-power, so that's good. You can see how it appears in the picture to the side here. Not sure it actually looks that much better, but the cut off pipe looked pretty janky. I will be installing a false-floor in the cabinet so it can be used as a cabinet again. I will be attaching the power selector switch to the bus as well as running a power line from the luxury battery. I intend to put some kind of heat insulation on the register to retain heat, and might add some air baffles to direct the air flow a little. I don't think any of those warrant a 6th post, though. Then again, one or more might appear on their own if I have nothing else going on, or they become more involved than I thought. Oh, one last thing: I found a guy who makes an after-market thermostat/controller for these things, called Afterburner. I intend to experiment with one of those, if I can get my hands on one.

Thanks, as always, for following along. If you have more questions about these heaters, I fully endorse JohnMcK's videos. They are incredibly informative.

Tuesday, February 25, 2020

Parking Heater (Part 4)

Picking up where I left off last time, I was in the middle of the install of one of those cheap eBay parking heaters that are a rip-off of those $1000US jobs. I have a partially constructed custom heat register, the fuel line run from the engine compartment through the fuel pump to the heater unit. I have holes bored for the combustion air intake and exhaust. Last, I have the unit grounded and the 12V source almost together. So, while lots of things are not done, they are all just a few steps away. I didn't quite finish it today.

Exhausting
making register
I had already worked the combustion air intake hose up through the holes from under the bus. This took a few trips in and out of the bus to get the hose to bend and not hang up as it passed through. If you have a helper, even a reluctant one, this is where s/he would really give lots of help for very little effort. With sufficient hose pushed through to the inside of the cabin (I gave myself about 6"), I switched to the exhaust. First, I slid the bendy stainless steel hose into the heat sleeve. The sleeve is 3' long, and it is much longer than the stainless steel exhaust hose/pipe; I will have extra. I got the sleeve as tight around the pipe as I could and slid it up through the holes from under the bus. These holes were more aligned and a little larger than the intake, so it went through with little fanfare.

Once through, I could start connecting the air and exhaust to the heater. The air hose was more willing to be managed, and connected without much effort. The exhaust, however, took some doing, but I got it on, and the sleeve pulled all the way to the top, and then clamped the pipe and sleeve to the heater output with one clamp. In the process, the fuel line popped off, so it needed to be re-attached. For now, the exhaust and intake pipes are laying on top of a car-ramp so they aren't sitting on the pavement in the rain. I'll button them up to the underside once everything is working and after the noise experiments indicate what muffler solution to use.

Heater In
heater in
With the underside connections to the heater all buttoned up, I was ready to press the heater into place. First, I set the heater above the hole and pushed a little bit. Say, 10 pounds of pressure. Then, similar to the run-around I did for the air intake, I got under the bus and tugged on the hoses a little bit. Again 10 pounds of pressure or less. This took some of the excess bends out so I could then press the heater home from inside. I checked again from below just to be sure. I then attached the unit to the bottom of the cabinet with a pair of wood screws and then tried to shake the heater. It wouldn't budge.

Fueled
Next, I needed to complete the connections for the fuel. I had intended to locate the "T" close to the front (front is front) of the engine compartment, but once I got in a position to work on it, I made a small change. The large clear filter was already in a fairly good space, and I figured that I could fit the "T" just downstream of the filter without cutting any fuel hoses. I took the "T", pressed on a short (2" long) stretch of hose on one end, and a 2" stretch of 4mm hose on the small part of the "T". I clamped the other end of the 4mm hose to the trimmed end of the heater fuel line. Then, I squeeze-sealed-off the hose between the clear filter and the large filter with a vice-grip. I was now able to remove the line from the clear filter and then quickly connected the short stretch of hose from the "T" to it. To the other end of the "T" I connected the vice-gripped line. All clamps were snugged down and then I removed the vice-grip, but fuel didn't really move around. The net result has fuel leaving the small clear filter and immediately enter the "T" fitting. The large end of the "T" continues on to the Caterpillar filter while the small (4mm) end of the "T" routes to the heater.

Priming
foamed and screwed
I should note that the picture in the last post of the fuel pump needed to change. The directions give no indication of the fuel flow direction, and that pump is one-directional, pulling towards the end which shares the electrical plug. That's the case with mine and while they may not all be the same, my viewings on YouTube of the little heater professor (John McK) implies that they are all the same. I was also alerted (again by Hal) about the orientation of the fuel pump in my post a few weeks back. So, I re-checked it, and he was right, I had it practically horizontal, and they need to be approaching vertical for the fuel to lubricate the piston inside the pump and for the little bubbles created during the pumping to float up into the heater. I disconnected the heater-side from the pump, shifted things around, and re-connected.

I left the fuel line at the supply-side of the fuel pump disconnected, however. To this line, I connected the Mity-Vac to fill it with fuel. Once the Mity-Vac jar was steadily filling, I stopped the vacuum and quickly reconnected the line to the pump. I checked the clear filter in the engine bay and it was full, so we should have a nice tight system now.

Complete Heat Register
When I last touched the heat register, it was a box, but it needed to be sealed and it still needed a 3" pipe connection. I got a 4" connector from Home Depot, and cut it open. I could have probably used some basic flashing, but thought the dimples and wrinkles would help hold the air hose on. I fit the cut connector into the hose, marked with a pen and then cut the connector so it fit a 3" diameter hose. I also cut about 1-1/2 inches off the end to make more maneuvering room in the cabinet. I fit the connector into the register from the inside, and pushed the seating tabs down. Once set, I used metal HVAC tape on all of the seams on the register, including the connector. You can see the finished result in the top picture.

register completed
My rough forming of the register resulted in the outlet not being completely flat. I tweaked it for a few minutes and got it close, but I knew I couldn't get it perfectly flat. To resolve, I put a thin strip of foam along the edge which would be pressed against the cabinet. Then, I threaded one screw per side through the register edge to hold it to the cabinet. I took it out to the bus, and pressed it into service.

Last for the heat outlet, I needed to run the air hose from the heater to the register. This was relatively simple. I laid out the hose to check length, cut it with a pair of scissors, and clamped it in. It took some wrestling.

Finish Electrical
With the fuel ready and the heated air routed, all that was left was connecting the final electrical bits. First, I completed the wiring from the fuel pump. By now, the switch I had ordered had arrived, so the rest was just as easy. I connected the center post to the heater supply-side and the fused 12V from the main battery to one of the outer posts. Then, I plugged in the controller and the heater.

Tests
The moment had arrived. After charging the battery, I flipped the switch, and heard the fuel pump fire up. Then, the fan on the heater started. Cool air blew through the register and out onto my boots. I felt the air flow and there was positive, consistent air movement all along the grate. But, the air was not warming up. Huh. So, I tried to figure out the interface, and I really couldn't. I knew from John McK's videos that the way you changed the temperature was to increase the speed of the fuel pump, so I messed with that a little bit. Turned out, I was just impatient. Once the glow plug was up to temp and fuel had made it down that last stretch of hose from the pump, the diesel started to fire and I started to get heat. Curious about the noise, I checked the driver side of the bus. It sits below 65dB, floating up and down depending on the fuel pump speed. At the lowest setting, my little phone app decoded the dB to "quiet house". At the mid-setting (3.3 on the pump speed) is decoded to "quiet street". This is without a baffle on the air intake, and the exhaust without any muffling while I was standing, semi-stooped over with a phone a few feet away from the hose ends. More on how these ends are dealt with next time.

Thanks, as always, for following along--