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首页> 外文期刊>JSME International Journal. Series C, Mechanical Systems, Machine Elements and Manufacturing >Design Sensitivity Analysis of Steady-State Acoustic Problems using Boundary Integral Equation Formulation
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Design Sensitivity Analysis of Steady-State Acoustic Problems using Boundary Integral Equation Formulation

机译:基于边界积分方程公式的稳态声学问题设计灵敏度分析

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This paper presents an integral equation formulation for design sensitivity coefficients of frequency responses in acoustic problems. The implicit differentiation approach is applied in the derivation of the sensitivity formula. The integral equation relating the pressure at an internal point to the boundary pressures and velocities is regularized and differentiated directly with respect to a design variable such as shape design parameter, frequency, mass density and impedance. The resulting integral equation for the design sensitivity coefficients has no Cauchy principal value integrals and can be applied continuously across the boundary of the acoustic field. The effectiveness of the present formulation is illustrated through some numerical examples for three-dimensional problems.
机译:本文针对声学问题中频率响应的设计灵敏度系数提出了积分方程公式。隐式微分方法应用于灵敏度公式的推导中。相对于设计变量(例如形状设计参数,频率,质量密度和阻抗),将内部点处的压力与边界压力和速度相关联的积分方程式进行了正则化和微分。设计灵敏度系数的所得积分方程不具有柯西主值积分,并且可以在声场边界上连续应用。通过一些有关三维问题的数值例子说明了本发明配方的有效性。

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