The cornerless room
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The cornerless room
I was wondering if anyone has trued and published data on the following.
The corners of a room are the places where standing waves and bass build up occur right? Why not build a room without any corners? Build a room within a room, but do not cover the corners of the vertical or hoizontal boundaires with wall board. All corner areas are bass traps.
Another advantage would be that a 14 x 19 room would be a true 14 x 19 room. And in a room this small, space is a premium.
I suppose that the real wall traps could be done in the same fahion. They would be flush with the room's wall, saving space.
The corners of a room are the places where standing waves and bass build up occur right? Why not build a room without any corners? Build a room within a room, but do not cover the corners of the vertical or hoizontal boundaires with wall board. All corner areas are bass traps.
Another advantage would be that a 14 x 19 room would be a true 14 x 19 room. And in a room this small, space is a premium.
I suppose that the real wall traps could be done in the same fahion. They would be flush with the room's wall, saving space.
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Congratulations with your nice forum.
To lowdbrent.
It's a wrong conclusion that standing waves build up in the corners.
ANY room shape has room modes.
There are ca 11 regular shapes which can be calculated analytically (as e.g. a circle) all the other shapes must be calculated numerically.
Look at the Chladni applet:
http://www.phy.davidson.edu/StuHome/jim ... modes.html
or the modes in a guitar bottom:
http://www.phys.unsw.edu.au/~jw/guitar/ ... _engl.html.
While this are modes in plates, the basic principle is identical to room modes in a 3-dimensional space (reverse nodes and antinodes). Note at the guitar bottom the lines are the nulls (nodes of the modes).
But with FEM (Finite Element Analysis Method) or BEM (Boundary element Method) software you can calculate and simulate the modal behavior of any room shape, also complete irregular ones.
So removing corners in the basic design has no sense, and often they are a great spot to build bastraps or very low extending broadband absorbers.
As such corners are no limitation but a help.
And for geometrical acoustics (frequency > 2 * Schroeder frequency) such rounded corners are mainly a problem, seldom a solution.
Eric
Last edited by Eric_Desart on Wed Jun 18, 2003 9:19 pm, edited 1 time in total.
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Welcome to the site Eric - I'm so glad you've come. Please feel free to offer your extensive knowledge to this site, it would be greatly appreciated - my offer to moderate the acoustics forum still stands and it's much easier to operate and gives better access to pics than your current forum
and like Yahoo - it's free 
cheers
john



cheers
john
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Definitely got MY vote - Eric, your posts on yahoo are among the FEW I actually pay SERIOUS attention to - although I've yet to post a question there, I do have a few for you (if you feel like sticking around for a while)
Again, a hearty welcome (whether you come to work or play :=) Steve
Again, a hearty welcome (whether you come to work or play :=) Steve
Soooo, when a Musician dies, do they hear the white noise at the end of the tunnel??!? Hmmmm...
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