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Estimation of evaporation and sensible heat flux from open water using a large-aperture scintillometer

机译:使用大口径闪烁仪估算开放水域的蒸发量和显热通量

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摘要

The use of scintillometers to determine sensible and latent heat flux is becoming increasingly common because of their ability to quantify convective fluxes over distances of hundreds of meters to several kilometers. The majority of investigations using scintillometry have focused on processes above land surfaces, but here we propose a new methodology for obtaining sensible and latent heat fluxes from a scintillometer deployed over open water. This methodology has been tested by comparison with eddy covariance measurements and through comparison with alternative scintillometer calculation approaches that are commonly used in the literature. The methodology is based on linearization of the Bowen ratio, which is a common assumption in models such as Penman's model and its derivatives. Comparison of latent heat flux estimates from the eddy covariance system and the scintillometer showed excellent agreement across a range of weather conditions and flux rates, giving a high level of confidence in scintillometry-derived latent heat fluxes. The proposed approach produced better estimates than other scintillometry calculation methods because of the reliance of alternative methods on measurements of water temperature or water body heat storage, which are both notoriously hard to quantify. The proposed methodology requires less instrumentation than alternative scintillometer calculation approaches, and the spatial scales of required measurements are arguably more compatible. In addition to scintillometer measurements of the structure parameter of the refractive index of air, the only measurements required are atmospheric pressure, air temperature, humidity, and wind speed at one height over the water body.
机译:由于闪烁体能够量化数百米至几千米范围内的对流通量,因此使用闪烁计确定感热通量和潜热通量变得越来越普遍。大多数使用闪烁法的研究都集中在陆地表面以上的过程,但是在这里,我们提出了一种新方法,可从部署在开阔水域上的闪烁仪获得敏感和潜热通量。通过与涡动协方差测量进行比较,并与文献中常用的替代闪烁仪计算方法进行比较,对该方法进行了测试。该方法基于鲍文比的线性化,这是彭曼模型及其派生模型中的常见假设。涡流协方差系统和闪烁仪的潜热通量估计值的比较表明,在各种天气条件和通量率范围内,一致性极佳,从而对闪烁法衍生的潜热通量具有很高的置信度。由于替代方法依赖于水温度或水体蓄热的测量,而这些方法都难以量化,因此所提出的方法比其他闪烁法计算方法产生了更好的估计。与替代的闪烁仪计算方法相比,所提出的方法所需的仪器更少,并且所需测量的空间尺度可以说更具兼容性。除了闪烁仪对空气折射率结构参数的测量外,唯一需要的测量是大气压力,空气温度,湿度和在水体上方某一高度的风速。

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  • 来源
    《Water resources research》 |2011年第5期|p.W05545.1-W05545.14|共14页
  • 作者单位

    EcoSciences Precinct, CSIRO Land and Water, Brisbane, Queensland,Australia;

    EcoSciences Precinct, CSIRO Land and Water, Brisbane, Queensland,Australia;

    Climate Research Group, School of Geography, Planning and Environmental Management, University of Queensland, St. Lucia,Queensland, Australia;

    Climate Research Group, School of Geography, Planning and Environmental Management, University of Queensland, St. Lucia,Queensland, Australia;

    CSIRO Land and Water, Highett, Victoria, Australia;

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