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首页> 外文期刊>Journal of Natural Sciences Research >Rainfall Intensity-Duration-Frequency Development for Soil and Water Conservation Interventions Under Changing Climate in Southern Tigray, Ethiopia
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Rainfall Intensity-Duration-Frequency Development for Soil and Water Conservation Interventions Under Changing Climate in Southern Tigray, Ethiopia

机译:埃塞俄比亚南部提格里州气候变化下水土保持措施的降雨强度-持续时间-频率发展

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Human beings, at a larger scale, are still in the hands of climatic influences, where extreme events of floods and droughts keep on claiming many lives all over the world . Rainfall Intensity Duration Frequency curves (IDF curves) are graphical representations of the amount of water that falls within a given period of time. IDF relationship is an important hydrologic tool which will bridge the gap between the design need and the unavailability of design information especially in planning and design of water resources projects. Due to lack of these IDF relationships, the planning and design of Soil-erosion prevention practices, water resource development, irrigation and drainage schemes, soil conservation programs and other projects are based on some assumptions and empirical data from other countries. The methodology implemented to assess changes in rainfall magnitude resulting from climate change includes the following components: (1) development of climate change scenario of precipitation using SDSM model; (2) statistical analysis of rainfall of various durations, and development of IDF curves under changed climatic conditions; and (3) comparative analysis of IDF curves. The climate scenario used in the analysis is climate change scenario that modifies the observed record according to GCM simulation outputs. Results of the study include tabular and graphical presentation of IDF curves for return periods of 2, 5, 10, 25, 50 and 100 years for durations of 1, 2, 3, 5, 6, 12 and 24 hours. The simulation results indicate that rainfall magnitude will increase under climate change for all durations and return periods at the stations. the comparison of the IDF results between historic rainfall and climate change rainfall intensity data set, it is difficult to say whether it is decreasing or increasing but the is a difference for the future time. Therefore, based on the results the IDF curves developed under climate change are believed to benefit the study areas in providing basic information’s on rainfall intensity, Duration and Frequency relationships to all intervention and to water professionals designers engaged in soil and water conservation and in water resources under climate change .
机译:更大范围内,人类仍然受到气候影响,洪水和干旱的极端事件不断夺走全世界的许多生命。降雨强度持续时间频率曲线(IDF曲线)是给定时间段内的水量的图形表示。 IDF关系是一种重要的水文工具,它将弥合设计需求与设计信息不可用之间的差距,尤其是在水资源项目的规划和设计中。由于缺乏这些IDF关系,土壤侵蚀预防措施,水资源开发,灌溉和排水计划,土壤保持计划及其他项目的规划和设计均基于其他国家的一些假设和经验数据。评估由气候变化引起的降雨量变化的方法包括以下组成部分:(1)使用SDSM模型开发气候变化情景下的降水; (2)对不同持续时间的降雨进行统计分析,以及在变化的气候条件下形成IDF曲线; (3)IDF曲线的比较分析。分析中使用的气候情景是根据GCM模拟输出修改观测记录的气候变化情景。该研究的结果包括IDF曲线的表格和图形表示,其返回期为2、5、10、25、50和100年,持续时间为1、2、3、5、6、12和24小时。模拟结果表明,在气候变化的情况下,车站的所有持续时间和返回期的降雨量都将增加。将IDF结果与历史降雨量和气候变化降雨量强度数据集进行比较,很难说它是在减少还是在增加,但这是将来的时间差。因此,根据这些结果,据信在气候变化下形成的IDF曲线将有利于研究领域,向所有干预措施以及从事水土保持和水资源工作的水专业设计人员提供降雨强度,持续时间和频率关系的基本信息。在气候变化下。

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