Putting on the Venturi cone while it was still on the shipping pallet seemed like a good idea at the time. My thinking was that this way the unit would be better balanced when I raised it up with the cherry picker. It didn't take long to realize that the flare of the added piece was going to get in the way when I tried to insert it into the 77" rough opening I had built.There are a lot of things they don't tell first time project builders like myself. It is hard to see that the top set of holes for attaching the wheels were above the wood. The 2x6 I used for the frame should have been a 2x8.
Tuesday, January 23, 2024
Fan Mounting
Saturday, January 20, 2024
Variable Speed Wind Tunnel Project
Presently the KidWind program (www.kidwind.org) uses a 4' by 4' by 4' wind tunnel powered by a 42" barn fan to draw in air to test the model wind turbines designed and built by middle and high school teams to see how much electric energy they will produce in 30 seconds against a 30 ohm load. The tunnels can achieve a wind velocity of about 4 meters per second (about 8 miles per hour).
This project intends to build a wind tunnel the can produce a variable speed wind speed up to 15 meters per second (about 30 miles per hour) to better simulate real world wind conditions. Follow along for the next two months and watch the progress.
The new tunnel will consist of three parts. The FAN, the CONNECTOR and the TEST AREA shown here in a staged set up. The FAN on the left is a $4,000 600 pound, 72" Mega Storm from J & D manufacturing out of Eau Claire, WI. The fan is driven by a 230v 3HP 3PH motor and is capable of moving 40,000 cfm of air. To visualize 40,000 cubic feet picture for a moment, a kids blow up bounce house the size of your typical 2 car garage. This fan could suck all the air out and flatten the bounce house in 30 seconds!
The CONNECTOR section will be a 4' long tapered tunnel made out of 1/2" MDO plywood. This tunnel will reduce the 6' fan opening on the Mega Storm down to the standard 4' KidWind testing tunnel. You can see how the 4' KidWind standard test chamber has been raised up 1' so that it is centered. A plywood platform will be built to accomplish this.
The first order of business will be to build a holder for the 600 pound fan. Typically this fan would be set into a buildings wall frame and secured there like a window or door. For this application a movable carrier will need to be constructed as shown in the sketch above.















