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采用精密声级计和双通道声学分析仪,对林杏琴会堂的声场分布、噪声本底和混响时间作了分区测试,应用建筑声学理论对会堂的音质状况进行了分析,并提出改善会堂音质的若干建议. 相似文献
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This paper proposes a fully three‐dimensional non‐linear Euler methodology for solving aerodynamic and acoustic problems in the presence of strong shocks and rarefactions. It uses a discontinuous Galerkin method (DGM) within the element, and a Riemann solver (HLLC) at the boundaries to propagate rarefactions while preserving the entropy condition and capturing shocks with no spurious oscillations. This approach is thought to marry the best aspects of finite element and finite volume methods, achieving conservation while not requiring the solution of a large matrix. Examples in which shock and rarefaction waves are well captured are presented and the propagation of acoustic pulses is well demonstrated. Copyright © 2003 John Wiley & Sons, Ltd. 相似文献
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C. Basu 《Il Nuovo Cimento D》1992,14(9):947-953
Summary A simple method has been suggested to estimate the acoustic characteristics of porous structure from a hybrid model—a hybridisation
of Biot's phenomenological model and the microscopic multiple-scattering theory which introduces the idea of an effective
tortuosity. Without using any adjustable parameter this model may be used to provide rough estimates of the tortuosity, the
fast, the shear and the slow sound speeds. The predictions are compared with observation on water-saturated glass bead samples.
The author of this paper has agreed to not receive the proofs for correction. 相似文献
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K.P.B. Moosad P. Krishnakumar G. Chandrashekar R.M.R. Vishnubhatla 《Applied Acoustics》2007,68(10):1280-1285
Class IV flextensional transducers (FTs) are the best-known FTs in literature. These are light-weight projectors (compared to the conventional Tonpilz designs) with capability for high power delivery at low frequencies. The resonance frequencies of this type of transducers are known to be dominantly dependent on the characteristics of the outer shell than on the driver stack. Consequently, the method of achieving fine-tuning of the transducer by modifying the characteristics of the stack, as practiced in the case of Tonpilz designs, is not very effective. This paper describes a method for fine-tuning of the frequency of a Class IV FT, which involves only a modification of a pair of small components used for coupling the stack to the transducer. The effectiveness of the method is examined by finite element modelling using the package ATILA, in the case of a 3 kHz aluminium shell transducer. Experimental results are also presented. 相似文献
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Frank Natterer Olga Klyubina 《计算数学(英文版)》2007,25(3):368-373
We study the initial value problem of the Helmholtz equation with spatially variable wave number. We show that it can be stabilized by suppressing the evanescent waves. The stabilized Helmholtz equation can be solved numerically by a marching scheme combined with FFT. The resulting algorithm has complexity n^2 log n on a n x n grid. We demonstrate the efficacy of the method by numerical examples with caustics. For the Maxwell equation the same treatment is possible after reducing it to a second order system. We show how the method can be used for inverse problems arising in acoustic tomography and microwave imaging. 相似文献
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The dissociation of water adsorbed on the surface of NiO was investigated by using the semi-empirical SCF MO method MSINDO.
Simulations were based on embedded cluster models representing the (100) surface, with and without a monatomic step. The angle
formed between the metal adsorption site and the O–H bond associated with water has been found to be critical to the energetics
of the dissociation process. Based on this criterion, it was shown that water dissociation is favorable on the stepped surface,
but highly unlikely on the planar surface. In addition, the activation energy required for water dissociation in a monatomic
NiO step was considerably lower than for dissociation at the planar surface. The high activation energy associated with water
dissociation on the planar surface is attributed to the rigidity of the NiO lattice.
Dedicated to Prof. K. Jug in honor of his 65th birthday 相似文献
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