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Furthermore, other calculated results,for example, the dependence of light intensity on the acoustic pressure amplitude, alsoagree well with the experiments.

此外,计算得到的声致发光光强对声压振幅的依赖性等趋势也与实验较好地吻合。

An analytic expression for the acoustic pressure in farfield are then obtained.

考虑弹性结构、可压缩流体和粘弹性消声瓦在交界面上的相互作用,然后给出了远场声压的解析表达式。

Meanwhile, this paper attempts to identify the sound source by reconstructing surface acoustic pressure. After the simulation and visualization processing, the method is found to be simple and feasible.

同时,探讨通过重构声源表面声压的方法来识别噪声源,经过模拟计算和可视化的实现,表明方法简单可行。

The conventional numerical simulation of a reverberant field as a launch acoustic environment was introduced. Following the reciprocity theorem used in the coupled FE-BE model, the structural response due to reverberant acoustic excitation was substituted by the sound pressure caused by force excitation on the structure, then the output response power spectrum density of the coupled model subjected to reverberant environment was evaluated based on the stochastic analysis principle.

首先介绍了传统的构建混响声场的数值模拟方法;其后利用声振耦合中的互易定理,将混响声场的激励问题转化为结构模型上力激励引起的场点声压响应问题,并采用随机分析原理,用谱分析方法推导了结构在混响声场激励下的响应计算公式;最后建立了航天器典型结构的声振耦合模型,并分别用传统方法和利用互易定理的方法进行了数值模拟。

It is revealed that acoustic quality is an important consideration in these buildings, and it may vary considerably with the same objective acoustic indices such as sound pressure level and reverberation time.

分析表明了声品质在这类非声学建筑中的重要性,另外,即使客观指标例如声压级和混响时间相同,声舒适度亦可能完全不同。

This paper has explained the characteristics,virtue of sound intensity measurement and the principle.

分析了声强测量的特点、优点和有关声强测量的基本原理,并与通常的声压测量进行了比较。

Followingly, an interfacial acoustic pressure level at a certain point on the vibrating plate is found with this equation.

以脉动半球声源和固定圆板的一阶振型假设为基本物理模型,导出了不同频率下的振声转换公式,由此求出振动板上某一点处的界面声压级。

There are two modeling methods used in this research area, that is analytical method and numerical method. Analytical method can be used to analyze the sound pressure within enclosures, and to analyze the control mechanisms theoretically, however it can be used for regular cuboids only. Numerical modeling method can manage enclosures with arbitrary boundaries, nevertheless, the results obtained using this method are dispersed sound pressure. It is hard to conduct real time control with this method. The two modeling methods have their own inherent defects.

对于封闭空间的结构声辐射,目前有解析建模和数值建模两种建模方法,解析建模方法可以从理论上对系统进行分析,探讨消声机理,但它只适用于长方体等规则封闭空间;数值建模方法不受空间边界形状的限制,得到的是空间声压的离散结果,难以用于实时控制,两种方法都存在着局限性。

In the experimental investigation of acoustic streaming, flow visualization techniques are used. The flow patterns of the vortex structures in the tube which transform with the variation of Sound Pressure Level of reflecting end are recorded in detail under the resonate frequency of the tube.

在对驻波声流的实验研究中,首先采用了流动显示技术对共振频率下,驻波管中稳定对称的声流旋涡结构随反射端声压级的变化作了全面细致的记录研究。

Through combining background noise and measuring environment study,the effects of background noise,surface absorption of the source in different environments as well as the difference between sound intensity measurement and sound pressure measurement are emphasized.

主要将背景噪声与测量环境结合起来,研究背景噪声、声源表面吸收在不同环境中的影响,还对声强法与声压法的差别作了比较。

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