Showing posts with label outdoor kitchen. Show all posts
Showing posts with label outdoor kitchen. Show all posts

November 12, 2021

Outdoor Wood Cookstove: Testing and Tweaks

Continued from here.

Once the chimney was in place, it was time for a test fire. Since this build was a first for us, we were curious as to how well it would work! Dan started a fire and put a saucepan of water on the stove. I attached our magnetic woodstove thermometer to the chimney, and we watched and waited.

Typically, a woodstove fire will be smokey at first, until it gets going well. Happily, no smoke came back out the firebox door, (backpuffing) which means we had a good draw.

Where we did get some unexpected smoke, was under the stovetop. You can see it if you look closely at the photo above, with a close-up below. 

The fix for this will be to add more rock wool to seal any air gaps that are there, although once the fire got going the smoking stopped.

The other place we got smoke, was when Dan removed the oven door.

This actually wasn't a surprise because the oven is what is called a "black" oven. In the world of rocket stoves, baking ovens can be either "white," (completely enclosed so that the heat and smoke pass around them), or "black," (where heat and smoke pass through them). Once the fire got going well and the stove heated up, the smoking stopped. Since I won't be using the oven until it's completely heated anyway, this isn't a problem.

The other thing we were curious about was the temperature of the chimney. Batch box and rocket stoves are designed to retain heat in the stove for as long as possible. This is done by 1) how the smoke and heat are routed through the stove, and 2) thermal mass (typically brick or cob).

In a conventional wood stove, the flue (exit from firebox to chimney) is located at the top of the stove. So heat and smoke go directly from the firebox to the outside via the chimney. This is not a very efficient design. In the batch box or rocket stove design, heat and smoke follow an indirect path. Heat is retained in the stove, where it is absorbed by the thermal mass. Only the coolest air exits the stove because the flue is located near the bottom of the stove.

In our stove, the flue is built into the bottom of the oven.

Photo from the core construction phase. Heat enters the
oven on the left, and exits to the chimney on the right.

Heat and smoke follow a convoluted path from the firebox through the core and enter the oven by the archway on the left. The heat circulates in the oven and the air sinks as it cools. The coolest air exits through the opening on the right (the flue). The chimney is directly above it.

If our stove was properly constructed, the chimney temperature should be much cooler than a conventional stove. Here's what our test run showed us. While water was simmering on the stove, the outside of the chimney pipe measured less than 100°F.


Once the fire got going, there was no smoke from the chimney. 

Smoke from a batch box or j-tube rocket stove is very clean, because its design enables wood gases (primarily carbon monoxide, methane, and hydrogen) to be burned rather than emitted through the chimney. (Detailed explanation here.) The result is a hotter fire with less wood, no soot, and clean exhaust.

Using less wood is one of the appeals of this kind of stove, so that's something else we were curious about. For the fire, Dan used paper, kindling, and half-a-dozen inch to inch-and-a-half sticks. It burned for about an hour, but the stove remained warm for the rest of the day.

Besides the leaky stovetop, two other tweaks were needed. We decided to reset the firebox door so that it is now flush with the stove front. The second was to fill in the air gap under the door. The only opening there should be the one in the secondary air tube.

Unfortunately, I won't get much use out of it (yet!), now that cold weather is settling in. Instead, I'll use my wood cookstove in the kitchen because it helps warm up the house. 

Our future plan is to replace our living room woodstove with a batch box masonry design. Hopefully, that will be next summer's big project.

November 9, 2021

Outdoor Cookstove Chimney & Secondary Air

Continued from here.

Almost done! For the cookstove chimney, Dan used the old ductwork we saved when our HVAC unit was installed. Why didn't he use double-wall stovepipe? Primarily, because the stove is in an open outdoor space; the chimney doesn't pass through walls, ceiling, or roof. In a house, building codes would require it to keep the house from burning down. Outdoors, we just want the smoke vented away from us as we're cooking. Secondarily, because the design of a masonry stove is such that 90% of the heat is retained in the stove rather than going up and out the chimney. That means that the stovepipe doesn't reach the high temperatures of a conventional woodburning stove.

Part of what helps the efficiency of our design, is the secondary air intake.

Secondary air tube

It fits into a channel built into the bottom of firebox (core). Click here for core construction photos here.


Dan welded an L-bracket to the tube to
keep firewood from hitting the air pipe.


When the door is closed, air is drawn through the tube under the door to the back of the firebox, where smoke and heat exit through a narrow side opening called the "port." This narrow opening slows the exit of the smoke, and when combined with heat from the fire and the extra oxygen from the secondary air, allows wood gases to be burned. The result is increased burn efficiency. (The concept is better explained at this website.)

Next, the chimney.


The insulation is non-combustible rock (aka mineral) wool.



How well did it work?!?!?!?!? More on that here.

October 24, 2021

Outdoor Kitchen: Wood Cookstove Top

Continued from here.

I fell a little short on taking photos for this step, but I'm sure you'll get the idea! The stove top is actually two pieces, one over the firebox for cooking and the other for the oven. For the oven top, Dan found a piece of granite.

Because the surface of the brick is rough, Dan sealed
it with gasket tape made for smokers and grills.

The "core" (firebox and smoke path) wasn't the same height as the brick (see
this post for more about the core); mineral wool was used to fill in the space.

Cutting the chimney hole on the backside of the granite.

Granite top in place.

For the cooktop, the plans called for a glass cooktop from an electric stove. We found one on craigslist for $30.

Topped!

The next step was to trim the edges. This was challenging because the two oven and stove tops are different heights. 

Dan found a set of bed rails for $10 at the thrift store to use for trim.

Trim for oventop welded and being tested for fit.

Trim for cooktop installed and painted black (with engine paint).

For finishing touches, Dan welded some hooks onto the trim for me.



Last step will be installing the chimney. Then we can fire it up and test it out.

Continued here.

October 4, 2021

Outdoor Kitchen: Wood Cookstove Firebox Side

Continued from here. 

Something unique about the wood cookstove Dan is building, is that the oven and the firebox are on different sides of the stove. The firebox is on the front, and the oven is on the back (or vice versa, depending on one's viewpoint.) Why the designer made it that way is unknown; maybe because his house was an open design and having the firebox on the living room side enabled easier feeding of the fire. I don't know. The original design had a fire viewing window at the back of the firebox. A nice feature, but unnecessary for us. We might could have put the doors on the same side, but making too many changes to an untried design didn't seem like a good idea. The plans were confusing enough as it was. On the bright side, having the firebox where it is will make it easier to toss in a little more wood to maintain cooking or baking heat.

Anyway, I hope that answers a question that might pop unto your mind as you look at my pictures. Now, on to the progress.

More on the construction of the firebox and core here.

Checking the fit of the firebox door.

The photo above shows a unique feature of the batch box firebox design. The tubular steel beneath the door is the secondary air intake. The primary intake is the slot in the door. In this design, the tube fits into a channel in the bottom of the firebox (see photo below) and channels air to the back of the firebox. This is part of the core design and results in a very clean burn of the firewood. 

Brickwork for front finished.

Close-up at a different angle.

Another question you might have (I would, if I was you) is, why is the door set so far back? Why isn't the door flush with the front brick face of the stove? That is the result of poorly written plans, and why I'm not linking to them. The plans were mostly a series of layered schematics, with little to no explanation of what was going on. Equally unfortunate, the recommended videos showed stoves with something different than the plans. It was both confusing and frustrating, and why this was almost an abandoned project! 

Firebox door in place without the 2ndary air channel.

The next step will be the stovetop, and that has become another adventure in creativity. I have to hand it to Dan. He's ordinarily quite willing to modify something as he sees fit, but this stove had him stumped. He finally decided to plow ahead in hopes that it worked out. It will still work as a cookstove, but its heat efficiency as a batch box stove remains to be seen.

Dan will also admit he isn't very satisfied with the brickwork, but I think he was at the point where he just wanted to get it done. He has found a masonry series on YouTube that has restored his enthusiasm for brick laying, so expect more brickwork projects sometime in the not too distant future. 

Continued here.

September 20, 2021

Outdoor Kitchen: Cookstove Progress in Pictures

Continued from here.

This will become the oven.

We needed a stand for the oven rack, so Dan welded one.

Stand for oven rack

Oven door opening under construction.

Side view.

How to make a base for bricks going over the top of the door opening.





This will secure the door in place.

Oven door opening with rack stand in place.

Overhead shot of the oven rack on the stand.

Custom made oven door by Dragon Tech, who specializes 
in doors and accessories for batch box rocket stoves.

The oven door is insulated with rock wool.

Oven side of the stove is done. 

Dan is currently working on the front side, where the firebox is. He's doing it with the oven and firebox on opposite sides because that's the way the plans are. He'd have probably done a whole lot differently, but for a first go with batch box masonry stove, it seemed like a good idea to follow some plans.

Rainy days have enabled most of the progress. With more rain in the forecast, I should have even more progress to show you soon. (Continued here).

August 17, 2021

Outdoor Kitchen: Cookstove Part 1

I've been talking about building an outdoor kitchen for a long time. Earlier this year, we finally got serious about plans for it (this post.) However, it's been one of those projects that doesn't get to the top of the to-do list because something else always comes up. Like the gate project. I have alternative ways to cook, so the summer kitchen is the thing that gets put on hold. Finally, enough progress has been made that I can share it with you!

The stove we chose is a Walker brick masonry stove. We're considering replacing our wood heater, so this design is sort of a trial run. Not so much for the heat, but for the fuel efficiency. The firebox in the Walker stove is a batch box design, similar to the ones used in batch box rocket stoves. Why are these more efficient? The geometry between the firebox and the internal chimney path create a turbulent mixing of oxygen and wood gases. The result is that the fire burns more completely and more cleanly. People report a decrease in wood fuel consumption by up to 75-80%. What's not to like about that! (For a better and more thorough explanation of how it works, visit Batchrocket.eu.)

Here's what's been accomplished so far. 

Frame for a concrete slab for the stove.

The base is cinder blocks.

Firebricks and red bricks.

The first layer.

The "core." Firebox and smoke path on the right. The oven will be on the left.

Side view of the core.

View from above. The smoke and heat come up from the fire
box and follow the brick path around and down into the oven.

The smoke and heat come out the left archway-like
 opening on the side of the core & circulate in the oven.
The little arch on the right will exit to the chimney.

View from the front. The rectangular
steel tubing is for airflow into the firebox.

Back of the core with brickwork begun.

Continued ---> here.