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ASSOCIATED STORAGE SYSTEM OF SILT RETENTION DAMS RESERVOIRS ON THE LOESS PLATEAU: CONCEPT AND DESIGN

机译:黄土高原淤泥保留坝和水库的相关存储系统:概念与设计

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On the Loess Plateau region in the Yellow River Valley, the present soil and water conservation checkdam groups mainly composed of individually-built silt retention dams, whcih cannot regulate the flood runoff and silt discharge from the tributary gullies in this area all the way, nor can they optimally utilize the dammed water and deposited fields behind the dams. This paper proposes the design methods and technical schemes of the ASSSRDR (Associated Storage System of Silt Retention Dams and Reservoirs). By integrating the goal of building dams artificially inrelation with with the characteristics of runoff from natural rainfall events , and adopting the principle of "time and space dislocation", this new technique of optimally concentrating and utilizing rain floods in the gullies is capable of separating, storing and exploiting water and silt individually, giving full play to the conceptual function of silt retention dams and reservoirs, and raising the possibilities of dam field utilization, dam water utilization efficiency and ability to arrange water volume in good time. Simultaneously this paper introduces at length the basic composition and functional characteristics of this system and summarizes the main types and key points of design of this system to be built in different orders of tributaries (gullies). At the same time, it proposes that the "construction of small and medium-sized reservoirs in the Loess Plateau region" should be listed in the key construction planning of harnessing and developing the Yellow River Basin.
机译:在黄河谷的黄土高原地区,目前的水土保持型校验型群主要由单独建造的淤泥保留坝组成,WHCIH无法调节洪水径流和淤泥排放在这一领域的支流沟渠中,也不是它们可以最佳地利用坝后面的滤水和沉积的田地。本文提出了ASSSRDR的设计方法和技术方案(淤泥保留坝和储层的相关存储系统)。通过将建筑物的目标与自然降雨事件的径流特征一致,采用“时间和太空脱位”的原理,这种最佳集中和利用沟壑中的雨洪水的新技术能够分离,单独储存和利用水和淤泥,充分发挥淤泥保留坝和储层的概念功能,并提高大坝现场利用,大坝水利利用效率以及在良好时间安排水量的可能性。同时,本文介绍了该系统的基本组成和功能特性,并总结了该系统的主要类型和关键点,以建造在不同的支流中的不同秩序(沟渠)。与此同时,它提出“黄土高原地区中小型水库”的建设应列入利用和开发黄河流域的关键施工规划。

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