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首页> 外文期刊>Hydrology and Earth System Sciences >Development and evaluation of an efficient soil-atmosphere model (FHAVeT) based on the Ross fast solution of the Richards equation for bare soil conditions
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Development and evaluation of an efficient soil-atmosphere model (FHAVeT) based on the Ross fast solution of the Richards equation for bare soil conditions

机译:基于Richards方程的Ross快速解的裸土条件有效土壤-大气模型(FHAVeT)的开发和评估

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摘要

In agricultural management, a good timing in operations, such as irrigation or sowing, is essential to enhance both economical and environmental performance. To improve such timing, predictive software are of particular interest. Optimal decision-software would require process modules which provide robust, efficient and accurate predictions while being based on a minimal amount of parameters easily available. The objective of this study is to assess the accuracy of a physically based model with high efficiency. To this aim, this paper develops a coupled model with climatic forcing based on the Ross fast solution for Richards' equation, heat transfer and detailed surface energy balance. The present study is limited to bare soil, but the impact of vegetation can be easily included. The developed model, FHAVeT (Fast Hydro Atmosphere Vegetation Temperature), is evaluated against the coupled model based on the Philip and De Vries (1957) description, TEC. The two models were compared for different climatic and soil conditions. Moreover, the model allows using various pedotransfer functions. The FHAVeT model showed better performance in regards to mass balance, mostly below 0.002 m, and generally improved computation time. In order to allow for a more precise comparison, six time windows were selected. The study demonstrated that the FHAVeT behaviour is quite similar to the TEC behaviour except under some dry conditions. The ability of the models to detect the occurrence of soil intermediate water content thresholds with a 1 day tolerance was also evaluated. Both models agreed in more than 90% of the cases.
机译:在农业管理中,良好的作业时机(例如灌溉或播种)对于提高经济和环境绩效至关重要。为了改善这种时机,预测软件特别受关注。最佳的决策软件将需要过程模块,这些模块必须提供健壮,有效和准确的预测,同时基于易于获得的最少参数。这项研究的目的是高效评估基于物理模型的准确性。为此,本文基于罗斯快速求解理查兹方程,传热和详细的表面能平衡,建立了具有气候强迫的耦合模型。目前的研究仅限于裸露的土壤,但植被的影响可以轻易包括在内。根据Philip和De Vries(1957)的描述TEC,针对耦合模型对已开发的模型FHAVeT(快速水文大气植被温度)进行了评估。比较了两种模型在不同气候和土壤条件下的情况。此外,该模型允许使用各种pedotransfer函数。 FHAVeT模型在质量平衡方面表现出更好的性能(大部分低于0.002 m),并且总体上缩短了计算时间。为了进行更精确的比较,选择了六个时间窗口。研究表明,除了在某些干燥条件下,FHAVeT行为与TEC行为非常相似。还评估了模型检测具有1天耐性的土壤中间水含量阈值的能力。两种模型在超过90%的案例中都表示同意。

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