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首页> 外文期刊>Measurement Science & Technology >Study of in situ calibration performance of co-located multi-sensor hot-film and sonic anemometers using a 'virtual probe' algorithm
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Study of in situ calibration performance of co-located multi-sensor hot-film and sonic anemometers using a 'virtual probe' algorithm

机译:使用“虚拟探头”算法研究并置多传感器热膜和声速风速计的原位校准性能

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摘要

The performance of an in situ calibration technique, implementing neural network (NN) algorithms for co-located multi-wire hot-film and sonic anemometers, is studied. The NN-based calibration technique, proposed by Kit et al (2010 J. Atmos. Ocean. Technol. 27 23-41), allows performing direct measurement of fine scales in turbulent air flow, and offers a robust tool for measurements of micro-scale properties in atmospheric flows. Accuracy of the suggested calibration technique is examined in view of isotropic and anisotropic flow fields of various turbulence intensity (TI). Anisotropic velocity datasets of various TIs were generated using a 'virtual probe' simulating hot-film anemometer response to the sensed flow, while a kinematic model of homogeneous isotropic turbulent flow was implemented to generate isotropic flow datasets. NN calibration performance is examined by quantitative comparison between the original and reconstructed velocity components, using a specially constructed norm and by visual comparison of original and reconstructed time series. The examined NN calibration technique performance is shown to be of reasonable accuracy for all TI velocity fields examined, while a notable drop in accuracy is detected with the increase in TI. The reconstruction of isotropic velocity fields, using the NN algorithm for calibration, is apparently of slightly lower accuracy than in the case of anisotropic flows. The results are discussed in view of possible implementation of the suggested technique in direct field measurements of atmospheric turbulence fine scales.
机译:研究了现场校准技术的性能,该技术采用神经网络(NN)算法同时定位多线热膜和声速风速计。 Kit等人(2010 J. Atmos。Ocean。Technol。27 23-41)提出的基于NN的校准技术,可以直接测量湍流中的微小尺度,并提供了一种强大的工具来测量微大气流量的比例特性。鉴于各种湍流强度(TI)的各向同性和各向异性流场,研究了建议的校准技术的准确性。使用“虚拟探针”模拟热膜风速计对感测到的流量生成各种TI的各向异性速度数据集,同时采用均质各向同性湍流运动学模型生成各向同性流量数据集。通过使用特殊构造的规范对原始速度分量和重建速度分量之间进行定量比较,以及通过视觉比较原始时间序列和重建时间序列,来检验NN校准性能。对于所检查的所有TI速度场,所检查的NN校准技术性能均显示出合理的准确性,而随着TI的增加,发现准确性显着下降。使用NN算法进行标定的各向同性速度场的重建显然比各向异性流的精度略低。鉴于建议的技术在大气湍流精细尺度的直接现场测量中的可能实现方式,对结果进行了讨论。

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