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首页> 外文期刊>Hydrology and Earth System Sciences >Impacts of non-ideality and the thermodynamic pressure work term ip/iΔiv/i on the surface energy balance
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Impacts of non-ideality and the thermodynamic pressure work term ip/iΔiv/i on the surface energy balance

机译:非理想度和热力学压力工作术语的影响 P δ v 在表面能平衡上

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摘要

Present-day eddy-covariance-based methods for measuring the energy and mass exchange between the earth's surface and the atmosphere often do not close the surface energy balance. Frequently the turbulent energy fluxes (sum of sensible and latent heat) underestimate the available energy (net incoming radiation minus the soil conductive heat flux) by 10 % to 20 % or more. Over the last 3 or 4 decades several reasons for this underestimation have been proposed, but nothing completely definitive has been found. This study examines the contribution of two rarely discussed aspects of atmospheric thermodynamics to this underestimation: the non-ideality of atmospheric gases and the significance the water vapor flux has for the sensible heat flux, an issue related to the pressure work term pΔv. The results were not unexpected; i.e., these effects are too small to account for all of the imbalance between the sum of the turbulent fluxes and the available energy. Together they may contribute 1 %–3 % of the difference (or 10 % to 15 % of the percentage imbalance).
机译:用于测量地球表面和大气之间的能量和批量交换的基于日的基于涡旋协方差的方法通常不会关闭表面能量平衡。通常,湍流能量通量(明智和潜热的总和)低估了可用能量(净入射辐射减去土壤导电热通量)10%至20%或更多。在过去的3年或4年中,已经提出了这种低估的几个原因,但没有发现任何完全明确的。本研究审查了两种很少讨论的大气热力学方面的贡献对此低估:大气气体的非理想性和水蒸气通量具有可显热通量的显着性,与压力工作术语PΔV有关的问题。结果不是出乎意料的;即,这些效果太小,无法考虑湍流助熔剂和可用能量的总和之间的所有不平衡。他们可以一起贡献1%-3%的差异(或10%至15%的不平衡百分比)。

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