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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >ON THE DAMPING OF TEMPERATURE FLUCTUATIONS IN A CIRCULAR TUBE RELEVANT TO THE EDDY COVARIANCE MEASUREMENT TECHNIQUE
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ON THE DAMPING OF TEMPERATURE FLUCTUATIONS IN A CIRCULAR TUBE RELEVANT TO THE EDDY COVARIANCE MEASUREMENT TECHNIQUE

机译:涡流协方差测量技术的圆管内温度波动阻尼的研究

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摘要

A semiempirical model for the heat exchanger design to find out a minimum length to dampen temperature fluctuations is presented. Stationary heat transport processes through the tube wall are analyzed by means of Nusselt numbers. The conservative treatment of the problem reveals that the tube length should be of the order of 1000 times the inner diameter of the tube to neglect the corrections due to sensible heat flux in eddy covariance measurements of trace gases. The model is analytical and easy to use regarding the choice of tube and flow characteristics. Teflon tube is found to be practically as good a heat conductor as metals. The minimum length required for the damping is not affected by the possible heating of the tube outer surface. [References: 6]
机译:提出了热交换器设计的半经验模型,以找出最小长度来抑制温度波动。通过Nusselt数分析通过管壁的固定传热过程。对问题的保守处理表明,管长应为管内径的1000倍,以忽略痕量气体的涡度协方差测量中由于感热通量而引起的校正。该模型具有解析性,并且在选择管道和流量特性时易于使用。发现铁氟龙管实际上与金属一样好。阻尼所需的最小长度不受管子外表面可能加热的影响。 [参考:6]

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