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                                                                                                                   TUNE INTO ZERO’s
SOUND SOLUTIONS
ZERO is a world-wide leader in high-performance acoustical control for doors, windows, walls or floors. Nobody does sound control better — we
Wilson, D. K. (2003). The sound-speed gradient and refraction in the near- ground atmosphere. Journal of the Acoustical Society of America 113, 750– 757.
Wilson, D. K., Andreas, E. L., Weatherly, J. W., Pettit, C. L., Patton, E. G., and Sullivan, P. P. (2007). Characterization of uncertainty in outdoor sound propagation predictions. Journal of the Acoustical Society of America Ex- press Letters 121, EL177-EL183.
Wilson, D. K., Lewis, M. S., Weatherly, J. W., and Andreas, E. L. (2008). Dependence of predictive skill for outdoor narrowband and broadband sound levels on the atmospheric representation. Noise Control Engineering Journal 56, 465–477.
Wilson, D. K., Noble, J. M., and Coleman, M. A. (2003). Sound propagation in the nocturnal boundary layer. Journal of the Atmospheric Sciences 60, 2473–2486.
Wilson, D. K., Pettit, C. L., Ostashev, V. E., and Vecherin, S. N. (2014). De- scription and quantification of uncertainty in outdoor sound propaga- tion calculations. Journal of the Acoustical Society of America 136, 1013– 1028.
Wyngaard, J. C. (2010). Turbulence in the Atmosphere. Cambridge Univer- sity Press, New York.
Wyngaard, J. C., Seaman, N., Kimmel, S. J., Otte, M., Di, X., and Gilbert, K. E. (2001). Concepts, observations, and simulation of refractive index turbulence in the lower atmosphere. Radio Science 36, 643–669.
Lenuscehaodwva,nDce.,dMteacnhno,loJ.g, yananddKtersitsitnegntsoemn,aLst.e(r1th9e94ch).aHlleongweslonf gcriesaltoinngg enough
an effective barrier and preventing gaps in that barrier for the life of the
when measuring fluxes and other turbulence statistics? Journal of the At- assembly. Our systems are rated for use in sound studios, music halls,
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Lihoreau, B., Gauvreau, B., Bérengier, M., Blanc-Benon, P., and Calmet, I.
brochure, and our 92 page Product Catalog, or download from our website.
(2006). Outdoor sound propagation modeling in realistic environments: Application of coupled parabolic and atmospheric models. Journal of the Acoustical Society of America 120, 110–119.
Ostashev, V. E. (1997). Acoustics in Moving Inhomogeneous Media. E & FN Spon, London.
Piercy, J. E., Embleton, T. F. W., and Sutherland, L. C. (1977). Review of noise propagation in the atmosphere. Journal of the Acoustical Society of America 61, 1403–1418.
Poulos, G. S., Blumen, W., Fritts, D., Lundquist, J. K., Sun, J., Burns, S. P., Nappo, C., Banta, R., Newsom, R., Cuxart, J., Terradellas, E., Balsley, B., and Jensen, M. (2002). CASES-99: A comprehensive investigation of the stable nocturnal boundary layer. Bulletin of the American Meteorological Society 83, 555–581.
Valente, D., Ronsse, L. M., Pater, L., White, M. J., Serwy, R., Nykaza, E. T., Swearingen, M. E., and Albert, D. G. (2012). Blast noise characteristics as a function of distance for temperate and desert climates. Journal of the Acoustical Society of America 132, 216–227.
West, M., Gilbert, K., and Sack, R. A. (1992). A tutorial on the parabolic
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equation (PE) model used for long range sound propagation in the atmo-
sphere. Applied Acoustics 37, 31–49.
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