R. E. Marrs, “Super Compliant Modules Enhance Loudspeaker Performance: Part II: Thermodynamic Theory and Test Results,” in Proc. AES Convention 76, Oct. 1984, Paper 2124. [Online]. Available: https://aes.org/publications/elibrary-page/?id=11630
Marrs RE. Super Compliant Modules Enhance Loudspeaker Performance: Part II: Thermodynamic Theory and Test Results. In: AES Convention 76. Audio Engineering Society; 1984. Paper 2124. Available from: https://aes.org/publications/elibrary-page/?id=11630
@inproceedings{Marrs1984_11630,
author = {Marrs, Ralph E.},
title = {{Super Compliant Modules Enhance Loudspeaker Performance: Part II: Thermodynamic Theory and Test Results}},
booktitle = {AES Convention 76},
note = {Paper 2124},
year = {1984},
month = oct,
publisher = {Audio Engineering Society},
url = {https://aes.org/publications/elibrary-page/?id=11630}
}
TY - CPAPER
TI - Super Compliant Modules Enhance Loudspeaker Performance: Part II: Thermodynamic Theory and Test Results
AU - Marrs, Ralph E.
T2 - AES Convention 76
M1 - Paper 2124
PY - 1984
DA - 1984/10/06
UR - https://aes.org/publications/elibrary-page/?id=11630
PB - Audio Engineering Society
LA - en
AB - Virtually all acoustic behavior is dependent on the value of n, the index of stiffness in the equation of compression gases. In a new system the value of n can be drastically reduced. A fluid with high vapor pressure responds in millisecond time frames by automatically evaporating or condensing on demand in real time. The compress/expand stiffness of this dew-point system can be less than adiabatic air by a factor of six or more. The theory and some simple governing equations will be given. Details of construction and test results will be presented.
ER -