Acoustic Horn Design – The Easy Way (Ath4)

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I used a simple method recommended to me by Joerg Panzer (author of ABEC), i.e. utilized a flat (mathematical) surface at the rear side of the waveguide, as if it was flat on the back side. The whole back-side surface of the actual horn could be modeled as well, I just don't consider it practical or very relevant.

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So, I have my first free-standing simulation ever :)...

The difference between the infinite baffle and freestanding curves looks to be very similar to the difference in my data:

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So it seems that the simulations and reality agree. Obviously the conditions are not exactly the same (freestanding vs cabinet), but the results are similar nonetheless.
 
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If you try something like the attached, you'll see that it will be more cd
Here you go. Would you consider it "more CD"? I'm not sure I would.

It is clear that reducing the flare radius is not a good idea - and this was already too much, IMHO. I could have told you right away but you wouldn't believe me :)

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I have plenty of those :) That would be great. Attached are some designs (full ABEC projects) I would be especially interested in -

Well, here is a first figure of "full spherical" DI of "OS-1" horn from your uploaded folder. Spatial resolution is 5 degrees. I will try to upload at least one DI graph per day. (sorry for the annoying watermark, but it is added automatically :D)

I have also depicted DI of this Lecleach-Iwata horn for comparison.

DI rises at the rate of ~2dB/oct for the Lecleach-Iwata horn and a bit less that 1dB/oct for Mabat's "OS-1".

It would be interesting to look at the frequency dependence of random-incidence absorption of a typical listening room. I suppose, that It would be reasonable to optimize horn shape in a such way, that frequency dependence of DI compensate that of room absorption :scratch2:.
 

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