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首页> 外文期刊>Journal of hydrometeorology >Effects of Atmospheric Surface Layer Stability on Turbulent Fluxes of Heat and Water Vapor across the Water-Atmosphere Interface
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Effects of Atmospheric Surface Layer Stability on Turbulent Fluxes of Heat and Water Vapor across the Water-Atmosphere Interface

机译:大气表层稳定性对跨水-气界面的热和水蒸气湍流的影响

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摘要

Widely used numerical models to estimate turbulent exchange of latent heat flux (LE) and sensible heat flux H across the water atmosphere interface are based on the bulk transfer relations linked indirectly to atmospheric stability, even though the accurate prediction of the influence of stability on fluxes is uncertain. Here eddy covariance data collected over the water surface of Ross Barnett Reservoir, Mississippi, was analyzed to study how atmospheric stability and other variables (wind speed, vapor pressure gradient, and temperature gradient) in the atmospheric surface layer (ASL) modulated LE and H variations in different stability ranges. LE and H showed right-skewed, bell-shaped distributions as the ASL stability shifted from very unstable to near neutral and then stable conditions. The results demonstrate that the maximum (minimum) LE and H did not necessarily occur under the most unstable (stable) conditions, but rather in the intermediate stability ranges. No individual variables were able to explain the dependence of LE and H variations on stability. The coupling effects of stability, wind speed, and vapor pressure gradient (temperature gradient) on LE (H) primarily caused the observed variations in LE and H in different stability ranges. These results have important implications for improving parameterization schemes to estimate fluxes over water surfaces in numerical models.
机译:广泛使用的数值模型来估算整个水-大气界面上的潜热通量(LE)和显热通量H的湍流交换,即使间接准确地预测了稳定性对通量的影响,该模型也基于与大气稳定性间接相关的整体传递关系。不确定。在此,对密西西比州Ross Barnett水库水面收集的涡动协方差数据进行了分析,以研究大气表层(ASL)中的大气稳定性和其他变量(风速,蒸气压梯度和温度梯度)如何调节LE和H不同稳定性范围内的变化。 LE和H表现出右偏的钟形分布,因为ASL的稳定性从非常不稳定的状态转变为接近中性然后稳定的状态。结果表明,最大(最小)LE和H不一定在最不稳定(稳定)的条件下发生,而是在中等稳定性范围内发生。没有单独的变量能够解释LE和H变化对稳定性的依赖性。稳定性,风速和蒸气压梯度(温度梯度)对LE(H)的耦合效应主要导致观察到LE和H在不同的稳定范围内的变化。这些结果对改进参数化方案以估算数值模型中水面通量具有重要意义。

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