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A holistic water depth simulation model for small ponds

机译:小池塘整体水深模拟模型

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Estimation of time varying water depth and time to empty of a pond is prerequisite for comprehensive and coordinated planning of water resource for its effective utilization. A holistic water depth simulation (HWDS) and time to empty (TE) model for small, shallow ephemeral ponds have been derived by employing the generalized model based on the Green-Ampt equation in the basic water balance equation. The HWDS model includes time varying rainfall, runoff, surface water evaporation, outflow and advancement of wetting front length as external inputs. The TE model includes two external inputs; surface water evaporation and advancement of wetting front length. Both the models also consider saturated hydraulic conductivity and fillable porosity of the pond's bed material as their parameters. The solution of the HWDS model involved numerical iteration in successive time intervals. The HWDS model has successfully evaluated with 3 years of field data from two small ponds located within a watershed in a semi-arid region in western India. The HWDS model simulated time varying water depth in the ponds with high accuracy as shown by correlation coefficient (R-2 >= 0.9765), index of agreement (d >= 0.9878), root mean square errors (RMSE <= 0.20 m) and percent bias (PB <= 6.23%) for the pooled data sets of the measured and simulated water depth. The statistical F and t-tests also confirmed the reliability of the HWDS model at probability level, p <= 0.0001. The response of the TE model showed its ability to estimate the time to empty the ponds. An additional field calibration and validation of the HWDS and TE models with observed field data in varied hydro-climatic conditions could be conducted to increase the applicability and credibility of the models. (C) 2015 Elsevier B.V. All rights reserved.
机译:估算随时间变化的水深和池塘排空时间是全面有效地规划水资源的前提。通过在基本水平衡方程中采用基于Green-Ampt方程的广义模型,得出了小型,浅表临时池的整体水深模拟(HWDS)和变空时间(TE)模型。 HWDS模型包括时变降雨,径流,地表水蒸发,流出和湿润前沿长度的增加作为外部输入。 TE模型包括两个外部输入。地表水蒸发和润湿锋面长度的增加。两种模型都将饱和的水力传导率和池塘床料的可填充孔隙率作为参数。 HWDS模型的解决方案涉及连续时间间隔内的数值迭代。 HWDS模型已成功利用印度西部半干旱地区一个流域内两个小池塘的三年实地数据进行了评估。 HWDS模型以相关系数(R-2> = 0.9765),一致性指数(d> = 0.9878),均方根误差(RMSE <= 0.20 m)和测量和模拟水深的汇总数据集的百分比偏差(PB <= 6.23%)。统计F和t检验还证实了HWDS模型在概率水平p <= 0.0001时的可靠性。 TE模型的响应表明它具有估算清空池塘时间的能力。可以对HWDS和TE模型进行额外的现场校准和验证,并在不同的水文气候条件下观察到的现场数据,以提高模型的适用性和可信度。 (C)2015 Elsevier B.V.保留所有权利。

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