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首页> 外文期刊>Journal of Hydrology >Representing the root water uptake process in the Common Land Model for better simulating the energy and water vapour fluxes in a Central Asian desert ecosystem
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Representing the root water uptake process in the Common Land Model for better simulating the energy and water vapour fluxes in a Central Asian desert ecosystem

机译:在“共同土地模型”中代表根源吸水过程,以更好地模拟中亚沙漠生态系统中的能量和水蒸气通量

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摘要

The ability of roots to take up water depends on both root distribution and root water uptake efficiency. The former can be experimentally measured, while the latter is extremely difficult to determine. Yet a correct representation of root water uptake process in land surface models (LSMs) is essential for a correct simulation of the response of vegetation to drought environment. This study evaluates the performance of the Common Land Model (CLM) to reproduce energy and water vapour fluxes measured with an eddy covariance system in a Central Asian desert ecosystem. The default CLM appears to be able to reproduce observed net radiation, soil subsurface temperature, and wet period latent (Q_(le)) and sensible heat (Q_h) fluxes, but significantly underestimate Q_(le) and overestimate Q_h during dry period. Underestimation of Q_(le) is attributed to the inappropriate representation of root water uptake process in the CLM model. Modifying the original root water uptake function (RWUF) with a linear function of soil water potential to one with an exponential function significantly improves the performances for both Q_(le) and Q_h. The net radiation and ground heat flux simulations did not change noticeable with the new RWUF. It is concluded that an exponential RWUF is a valuable improvement of the CLM model and likely for other similar LSMs that use a linear RWUF for Central Asian desert ecosystems.
机译:根系吸收水分的能力取决于根系分布和根系吸收水分的效率。前者可以通过实验测量,而后者极难确定。然而,在陆地表面模型(LSMs)中正确表达根系吸水过程对于正确模拟植被对干旱环境的响应至关重要。这项研究评估了通用土地模型(CLM)在中亚沙漠生态系统中利用涡旋协方差系统测得的能量和水蒸气通量的再生性能。默认的CLM似乎能够重现观察到的净辐射,土壤地下温度以及湿期潜伏(Q_(le))和显热(Q_h)通量,但是在干旱时期会大大低估Q_(le)并高估Q_h。 Q_(le)的低估归因于CLM模型中根系吸水过程的不适当表示。用土壤水势的线性函数将原始的根系水分吸收函数(RWUF)修改为指数函数可以显着提高Q_(le)和Q_h的性能。新型RWUF的净辐射和地面热通量模拟没有明显变化。结论是,指数式RWUF是CLM模型的宝贵改进,对于其他将线性RWUF用于中亚沙漠生态系统的类似LSM而言,也可能是有价值的改进。

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