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A fast near-field method for calculations of time-harmonic and transient pressures produced by triangular pistons

机译:快速近场方法用于计算三角活塞产生的时谐和瞬态压力

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摘要

Analytical expressions are demonstrated for fast calculations of time-harmonic and transient near-field pressures generated by triangular pistons. These fast expressions remove singularities from the impulse response, thereby reducing the computation time and the peak numerical error with a general formula that describes the near-field pressure produced by any triangular piston geometry. The time-domain expressions are further accelerated by a time-space decomposition approach that analytically separates the spatial and temporal components of the numerically computed transient pressure. Applied to a Hanning-weighted input pulse, time-space decomposition converts each spatio-temporal integral into six spatial integral evaluations at each field point. Time-harmonic and transient calculations are evaluated for an equilateral triangle with sides equal to four wavelengths, and the resulting errors are compared to pressures obtained with exact and approximate implementations of the impulse response method. The results show that the fast near-field method achieves smaller maximum errors and is consistently faster than the impulse response and methods that approximate the impulse response.
机译:分析表达式被证明用于快速计算三角形活塞产生的时谐和瞬态近场压力。这些快速表达式消除了脉冲响应中的奇点,从而减少了计算时间和峰值数值误差,其通用公式描述了任何三角活塞几何形状所产生的近场压力。时域表达式通过时空分解方法进一步加速,该方法可分析性地分离数值计算的瞬态压力的空间和时间分量。应用于汉宁加权输入脉冲时空分解将每个时空积分转换为每个场点的六个空间积分评估。对于边长等于四个波长的等边三角形,评估了时谐和瞬态计算,并将所产生的误差与通过脉冲响应方法的精确和近似实现获得的压力进行比较。结果表明,快速近场方法获得的最大误差较小,并且始终比脉冲响应和近似于脉冲响应的方法快。

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