And the second phase is computing the static pressure sp of your system to determine the size and power of your dust collection unit.
Dust collection system layout.
Dust collection design can be complicated here are a few simply steps to laying out an effective and efficient dust collection system.
Draw a floor plan of your shop 2.
Determine diameter and cfm of each branch 4.
We have simplified the dust collection system design process for smaller shops it is important to know federal state and localities have codes and regulations enforced by ahj authorities having jurisdiction governing sales construction installation and.
There is a large amount of misinformation about what the proper size pipe is to run.
Determine diameter and cfm of main duct 5.
Designing your dust collection system there are five simple steps to designing an effective and efficient dust collection system.
The things that increase static pressure in dust collection include smaller ducts longer distances bends in the pipe and flexible tubing so we will focus our efforts in minimizing those things that materially increase static pressure in our systems.
In reality proper pipe sizing can get complicated and depends on many variables.
Determine duct velocity fpm 3.
Air and wood particles moving through the dust collection system quickly build up static electricity charges in any nonconductive hose or piping hose or piping not made of metal.
Figure system resistance sp static pressure.
There are two phases to designing your dust collection system.
Many dust collection systems suffer due to poor ductwork designs.
Tool size air requirements length of pipe run required number of machines running at one time etc.