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首页> 外文期刊>Experiments in Fluids: Experimental Methods and Their Applications to Fluid Flow >Selection of optimal multi-hotwire probe in constant temperature anemometry (CTA) for transonic flows
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Selection of optimal multi-hotwire probe in constant temperature anemometry (CTA) for transonic flows

机译:跨跨音管恒温低温(CTA)最佳多炎探针的选择

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摘要

To decouple dimensional flow perturbation quantities, a probe optimization method is proposed for multi-wire constant temperature anemometry in transonic flow conditions. Historically, hotwire measurements of density, velocity, and totaltemperature fluctuations in transonic flows are challenging due to the complexity of calibration and difficulties in obtaining a probe with favorably conditioned sensitivity matrix. Based on universal empirical correlation for heated cylinders in compressible flow, the current method relies on evaluation of wire-voltage sensitivities to density, velocity, and total temperature perturbations. To maximize the signal-to-noise ratio (SNR) of the decoupling, a two-step optimization-sifting procedure is developed. The first-step optimization maximizes a value function geared towards lower sensitivity-matrix condition numbers, better robustness against wire temperature-setting errors, and large sensitivities. From the resulting Pareto front, the second step sifts further through the candidate probes by decoupling simulated noisy voltage and ranking the probes by their decoupling quality. The performance of the optimal wire temperatures and diameters combination is contrasted against probes stemming from a naive selection from the parameter space. According to the artificial data, only the optimal probes enable decoupling with reasonable SNR. Finally, the research effort proposes guidelines to define a probe with desirable properties, applicable across a wide range of transonic flow conditions.
机译:为了解耦尺寸流动扰动量,提出了一种探针优化方法,用于跨音质流动条件中的多线恒温性风化。历史上,由于校准的复杂性和获得有利调节敏感性矩阵的探针的复杂性以及难以获得探针的复杂性,Hotwire测量的密度,速度和TotalTemperation的延长流量的波动是具有挑战性的。基于可压缩流动加热汽缸的通用经验相关性,电流方法依赖于丝电压敏感性对密度,速度和总温度扰动的评估。为了最大化去耦的信噪比(SNR),开发了两步优化筛分过程。第一步优化最大化朝向较低灵敏度 - 矩阵条件数量的值函数,更好地对电线温度设定误差的鲁棒性以及大的灵敏度。从得到的帕累托前沿,通过去耦模拟噪声电压并通过其去耦质量排序探测器来进一步通过候选探针进一步筛选第二步骤。最佳电线温度和直径组合的性能与从参数空间的幼稚选择源的探针形成鲜明对比。根据人工数据,只有最佳探头能够与合理的SNR解耦。最后,研究工作提出了指导原则来定义具有所需性能的探针,适用于各种跨音速流动条件。

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