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Rotary woofer

A rotary woofer is a subwoofer-style loudspeaker which reproduces very low frequency content by using a conventional speaker voice coil's motion to change the pitch of an impeller rotating at a constant speed. The pitch of the fan blades is controlled by the audio signal presented to the voice coil, and is able to swing both positive and negative, with respect to a zero pitch spinning blade position. Since the audio amplifier only changes the pitch of the blades, it takes much less power, per dB of generated acoustic sound level, to drive a rotary woofer than to power a conventional subwoofer, which uses a moving electromagnet (voice coil) placed within the field of a stationary permanent magnet to drive a cone which then displaces air. Rotary woofers excel at producing sounds below 20 Hz, below the normal hearing range; when installed in the wall of a sealed room, they can produce audio frequencies down to 0 Hz, a static pressure differential, by simply compressing the air in the sealed room.[1][2]

Description

In the early 1970s, researchers noted that while humans could detect frequencies below 20 Hz, the ear was much less sensitive to these frequencies. As a result, increased sound pressure levels are required to perceive these sounds. These frequencies are often not audible but still subliminally detected by humans (see: Infrasound). Typical subwoofers using moving cones do not transmit energy very well to the air below 20 Hz, and thus their sound pressure level (SPL) falls off significantly below this frequency.[3][4]

To help people to perceive the very-low-frequency content available in recorded material, Bruce Thigpen of Eminent Technology experimented with new methods of producing the required SPL. The rotary woofer displaces far more air than is possible using moving cones, which makes very-low-frequency reproduction possible.

Instead of using a moving electromagnet (voice coil) placed within the field of a stationary permanent magnet to drive a cone, like a conventional subwoofer, on a rotary woofer, the voice coil's motion is used to change the angle of a fixed rotation speed set of fan blades in order to generate sound pressure waves. The pitch of the blades change according to the signal the amplifier supplies, producing a modulated sound wave due to the air moved by the spinning blades.[5] If there is no signal applied, the blades simply rotate "flat" at zero pitch, producing no sound. Since the audio amplifier only changes the pitch of the blades, it takes much less power to drive a rotary woofer, although a secondary power source is required to drive the fan motor.[6][7]

As an analogy, the hub of the rotary woofer's fan is somewhat like a helicopter's swashplate which allows a stationary source of reciprocating motion—the voice coil of the subwoofer—to change the angle of the spinning set of blades.

A rotary woofer is designed to produce only frequencies lower than 20 Hz; distortion increases as the input frequency exceeds the fan's rotation rate (20 Hz would be about 1200 rpm for the fan), which is itself limited by the need to avoid making higher-frequency noise (due to the sound of the spinning blades). Current models use an AC induction motor spinning at 800 RPM (13 Hz). The woofer is installed and carefully braced so that the blades lie in a circular opening, so that air can be moved between an external chamber, such as the attic of a house, and the main listening space; if the rotary woofer were not installed in such a "baffle" and placed directly in the main space instead, the generated sound pressure from the rear of the unit being 180 degrees out of phase would almost completely cancel that from the front the end, the result of which would not be fit for its intended application.

This paper presents new binaural hearing threshold data obtained (a) by an earphone method over the frequency range 5–100 Hz and (b) by a whole body chamber method over the range 2–20 Hz. The results obtained are in excellent agreement with recent reported data. The binaural to monaural listening advantage appears to remain at 3 dB throughout the frequency range. A good approximation to the binaural threshold of hearing may be formed by lines from the point 92.0 dB SPL at 15.5 Hz with slopes of 12.3 dB/octave for frequencies below 15.5 Hz and 22.2 dB/octave above.

— Yeowart and Evans (1974) – Acoustical Society of America

This suggests that for sound to be perceived at 7–8 Hz, the 7–8 Hz SPL would have to be 12.3 dB higher than the 92.0 dB SPL required at 15.5 Hz, which means that the 7–8 Hz SPL would require at least 104 dB of SPL to be perceived. For 3 Hz to be perceived, the SPL would need to add another 12.3 dB, or reach 116 dB of SPL, to be perceived.[8]

Installations

Six rotary woofers are installed as part of an immersive Niagara Falls attraction known as Niagara's Fury, located in the Table Rock House, to provide low frequency extension down to less than 1 Hertz, to emulate those waves created by the falls.[9]

See also

References

  1. ^ "Eminent Technology TRW-17 Rotary Subwoofer". Sound & Vision. 2010-08-17. Retrieved 2018-04-05.
  2. ^ "Rotary woofer?". Ars Technica OpenForum. Retrieved 2018-04-05.
  3. ^ "Rotary Subwoofer Combines A Speaker Coil W/ a Fan". Hackaday. 2016-03-30. Retrieved 2018-04-05.
  4. ^ "World's most amazing subwoofer has no woofer". CNET. 2010-08-29. Retrieved 2018-04-05.
  5. ^ "How Eminent Technology's Thigpen Rotary Woofer works". Eminent Technology. Retrieved 2011-06-05.
  6. ^ Park, Joseph (2009). "The rotary subwoofer: A controllable infrasound source". The Journal of the Acoustical Society of America. 125 (4): 2006–2012. Bibcode:2009ASAJ..125.2006P. doi:10.1121/1.3082115. PMID 19354376.
  7. ^ B. J. Bedard and T. M. Georges, "Atmospheric infrasound," Phys. Today 53(3), 32–37 (2000).
  8. ^ "Rotary Subwoofer cabable of frequencies of lower than 1HZ!". Head-Fi.org. Retrieved 2018-04-05.
  9. ^ "Niagara Falls Fury rotary woofer installation". Eminent Technology. 2009. Retrieved 2011-07-05.

Sources

  • Danish study on Infrasound (in Danish)
  • Journal of Acoustic Society paper by Yeowart and Evans

External links

  • Rotary Woofer site
  • International Audio Review Technical Article
  • Rotary Woofer Installation Blog

rotary, woofer, rotary, woofer, subwoofer, style, loudspeaker, which, reproduces, very, frequency, content, using, conventional, speaker, voice, coil, motion, change, pitch, impeller, rotating, constant, speed, pitch, blades, controlled, audio, signal, present. A rotary woofer is a subwoofer style loudspeaker which reproduces very low frequency content by using a conventional speaker voice coil s motion to change the pitch of an impeller rotating at a constant speed The pitch of the fan blades is controlled by the audio signal presented to the voice coil and is able to swing both positive and negative with respect to a zero pitch spinning blade position Since the audio amplifier only changes the pitch of the blades it takes much less power per dB of generated acoustic sound level to drive a rotary woofer than to power a conventional subwoofer which uses a moving electromagnet voice coil placed within the field of a stationary permanent magnet to drive a cone which then displaces air Rotary woofers excel at producing sounds below 20 Hz below the normal hearing range when installed in the wall of a sealed room they can produce audio frequencies down to 0 Hz a static pressure differential by simply compressing the air in the sealed room 1 2 Contents 1 Description 2 Installations 3 See also 4 References 5 Sources 6 External linksDescription EditIn the early 1970s researchers noted that while humans could detect frequencies below 20 Hz the ear was much less sensitive to these frequencies As a result increased sound pressure levels are required to perceive these sounds These frequencies are often not audible but still subliminally detected by humans see Infrasound Typical subwoofers using moving cones do not transmit energy very well to the air below 20 Hz and thus their sound pressure level SPL falls off significantly below this frequency 3 4 To help people to perceive the very low frequency content available in recorded material Bruce Thigpen of Eminent Technology experimented with new methods of producing the required SPL The rotary woofer displaces far more air than is possible using moving cones which makes very low frequency reproduction possible Instead of using a moving electromagnet voice coil placed within the field of a stationary permanent magnet to drive a cone like a conventional subwoofer on a rotary woofer the voice coil s motion is used to change the angle of a fixed rotation speed set of fan blades in order to generate sound pressure waves The pitch of the blades change according to the signal the amplifier supplies producing a modulated sound wave due to the air moved by the spinning blades 5 If there is no signal applied the blades simply rotate flat at zero pitch producing no sound Since the audio amplifier only changes the pitch of the blades it takes much less power to drive a rotary woofer although a secondary power source is required to drive the fan motor 6 7 As an analogy the hub of the rotary woofer s fan is somewhat like a helicopter s swashplate which allows a stationary source of reciprocating motion the voice coil of the subwoofer to change the angle of the spinning set of blades A rotary woofer is designed to produce only frequencies lower than 20 Hz distortion increases as the input frequency exceeds the fan s rotation rate 20 Hz would be about 1200 rpm for the fan which is itself limited by the need to avoid making higher frequency noise due to the sound of the spinning blades Current models use an AC induction motor spinning at 800 RPM 13 Hz The woofer is installed and carefully braced so that the blades lie in a circular opening so that air can be moved between an external chamber such as the attic of a house and the main listening space if the rotary woofer were not installed in such a baffle and placed directly in the main space instead the generated sound pressure from the rear of the unit being 180 degrees out of phase would almost completely cancel that from the front the end the result of which would not be fit for its intended application This paper presents new binaural hearing threshold data obtained a by an earphone method over the frequency range 5 100 Hz and b by a whole body chamber method over the range 2 20 Hz The results obtained are in excellent agreement with recent reported data The binaural to monaural listening advantage appears to remain at 3 dB throughout the frequency range A good approximation to the binaural threshold of hearing may be formed by lines from the point 92 0 dB SPL at 15 5 Hz with slopes of 12 3 dB octave for frequencies below 15 5 Hz and 22 2 dB octave above Yeowart and Evans 1974 Acoustical Society of America This suggests that for sound to be perceived at 7 8 Hz the 7 8 Hz SPL would have to be 12 3 dB higher than the 92 0 dB SPL required at 15 5 Hz which means that the 7 8 Hz SPL would require at least 104 dB of SPL to be perceived For 3 Hz to be perceived the SPL would need to add another 12 3 dB or reach 116 dB of SPL to be perceived 8 Installations EditSix rotary woofers are installed as part of an immersive Niagara Falls attraction known as Niagara s Fury located in the Table Rock House to provide low frequency extension down to less than 1 Hertz to emulate those waves created by the falls 9 See also EditEminent Technology Civil defense sirenReferences Edit Eminent Technology TRW 17 Rotary Subwoofer Sound amp Vision 2010 08 17 Retrieved 2018 04 05 Rotary woofer Ars Technica OpenForum Retrieved 2018 04 05 Rotary Subwoofer Combines A Speaker Coil W a Fan Hackaday 2016 03 30 Retrieved 2018 04 05 World s most amazing subwoofer has no woofer CNET 2010 08 29 Retrieved 2018 04 05 How Eminent Technology s Thigpen Rotary Woofer works Eminent Technology Retrieved 2011 06 05 Park Joseph 2009 The rotary subwoofer A controllable infrasound source The Journal of the Acoustical Society of America 125 4 2006 2012 Bibcode 2009ASAJ 125 2006P doi 10 1121 1 3082115 PMID 19354376 B J Bedard and T M Georges Atmospheric infrasound Phys Today 53 3 32 37 2000 Rotary Subwoofer cabable of frequencies of lower than 1HZ Head Fi org Retrieved 2018 04 05 Niagara Falls Fury rotary woofer installation Eminent Technology 2009 Retrieved 2011 07 05 Sources EditDanish study on Infrasound in Danish Journal of Acoustic Society paper by Yeowart and Evans UK government paper on very low frequency soundExternal links EditRotary Woofer site International Audio Review Technical Article Rotary Woofer Installation Blog Retrieved from https en wikipedia org w index php title Rotary woofer amp oldid 1112724578, wikipedia, wiki, book, books, library,

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