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首页> 外文期刊>Hydrological ProcHydrological Processesrnesses >Discussion and reassessment of the method used for accepting or rejecting data observed by a Bowen ratio system
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Discussion and reassessment of the method used for accepting or rejecting data observed by a Bowen ratio system

机译:讨论和重新评估用于接收或拒绝Bowen比率系统观察到的数据的方法

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摘要

The Bowen ratio energy balance method often produces extremely inaccurate magnitudes of the flux due to resolution limits of the instruments. We analysed the criteria used for rejecting inaccurate data observed using a Bowen ratio system and the resolution limit of the sensors to analytically determine the reliable values of the Bowen ratio (β) and the latent and sensible heat fluxes. The formula used to calculate the error limit of the Bowen ratio (β) was corrected based on the theory of error analysis. An example was proposed for the common case with 0.2 °C resolution limit of temperature measurement and 0.08 kP resolution limit of water vapour pressure measurement, to show the steps of accepting or rejecting data observed by a Bowen ratio system. The acceptance or rejection of data observed by a Bowen ratio system is a dynamic process, which should be performed based on the excluded interval of the Bowen ratio and the qualitative relationships among the data observed by a Bowen ratio system. The excluded interval of the Bowen ratio can be structured based on the accuracy of the sensors used. Data are excluded first if they do not satisfy the qualitative relationships between the vapour pressure difference, the temperature difference, Bowen ratio, and the available energy, whereas the data in the rejection region range of the Bowen ratio are excluded second. It is necessary to improve the accuracy of the temperature and humidity probes to improve the acceptance rate for data collected using the Bowen ratio system, apart from improving the observed precision of available energy. Copyright © 2013 John Wiley & Sons, Ltd.
机译:由于仪器的分辨率限制,鲍文比能量平衡方法通常会产生极其不精确的通量。我们分析了用于拒绝使用Bowen比率系统观察到的不准确数据的标准和传感器的分辨率极限,从而分析确定了Bowen比率(β)和潜热通量与感热通量的可靠值。基于误差分析理论,对计算鲍文比(β)误差极限的公式进行了修正。提出了一个示例,该示例具有0.2°C的温度测量分辨率极限和0.08 kP的水蒸气压力测量分辨率极限,以显示接受或拒绝Bowen比率系统观察到的数据的步骤。鲍文比率系统观察到的数据的接受或拒绝是一个动态过程,应基于排除的鲍文比率间隔和鲍文比率系统所观察到的数据之间的定性关系来执行。可以基于所使用的传感器的精度来构造排除的鲍文比的间隔。如果数据不满足蒸气压差,温度差,Bowen比和可用能量之间的定性关系,则首先将其排除,然后将Bowen比的拒绝区域范围内的数据排除在外。除了提高观察到的可用能量精度外,还必须提高温度和湿度探头的精度,以提高使用鲍文比率系统收集的数据的接受率。版权所有©2013 John Wiley&Sons,Ltd.

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    Xinjiang Institute of Ecology and Geography Chinese Academy of Sciences(CAS) State Key Laboratory of Desert and Oasis Ecology Urumqi China;

    Xinjiang Institute of Ecology and Geography Chinese Academy of Sciences(CAS) State Key Laboratory of Desert and Oasis Ecology Urumqi China;

    Xinjiang Institute of Ecology and Geography Chinese Academy of Sciences(CAS) State Key Laboratory of Desert and Oasis Ecology Urumqi China;

    Chinese Academy of Agricultural Sciences Farmland Irrigation Research Institute Xinxiang China;

    Xinjiang Institute of Ecology and Geography Chinese Academy of Sciences(CAS) State Key Laboratory of Desert and Oasis Ecology Urumqi China;

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  • 原文格式 PDF
  • 正文语种 eng
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  • 关键词

    Bowen ratio; energy balance; error analysis; temperature difference; vapour pressure difference;

    机译:鲍恩比;能量平衡;误差分析;温差;蒸气压差;

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