Assessment the impacts of land cover and climate changes on rainwater harvesting systems using remote sensing and runoff model in some Wadis of West Matrouh – Egypt

Haytham M. Salem , Mohamed A.I. Abdalla , Khaled A. Metwally
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Abstract

The aim of this study is to evaluate the potential changes in land cover and their impacts on rainwater harvesting systems, with a focus on Egypt's northwestern coastal region. To accomplish this objective, we utilized the kinematic runoff and erosion model (KINEROS2) to estimate the effects of projected land use changes on runoff and sediment load. The results demonstrated satisfactory performance of the model, with average Nash-Sutcliffe Efficiency values of 0.75 for calibration and 0.77 for validation, indicating successful simulations. The analysis revealed that land use changes had minimal impact in the base scenario (S1), resulting in moderate fluctuations in estimated sediment load. Conversely, the supplementary scenarios (S2 and S3) exhibited more pronounced alterations in land use, resulting in significant deviations in model estimations, notably indicating a substantial reduction in soil erosion. The integration of land use change analysis with KINEROS2 modeling emphasizes the potential for implementing effective management strategies.

利用遥感和径流模型评估埃及西马特鲁一些瓦迪斯的土地覆盖和气候变化对雨水收集系统的影响
本研究旨在评估土地覆盖的潜在变化及其对雨水收集系统的影响,重点是埃及西北部沿海地区。为实现这一目标,我们利用运动径流和侵蚀模型(KINEROS2)估算了预计的土地利用变化对径流和沉积物负荷的影响。结果表明,该模型的性能令人满意,校准的纳什-苏特克利夫效率平均值为 0.75,验证的纳什-苏特克利夫效率平均值为 0.77,表明模拟成功。分析表明,土地利用变化对基本方案(S1)的影响极小,导致估计的沉积物负荷波动不大。相反,在补充方案(S2 和 S3)中,土地利用的变化更为明显,导致模型估算出现显著偏差,特别是土壤侵蚀量大幅减少。将土地利用变化分析与 KINEROS2 模型相结合,强调了实施有效管理策略的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
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