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Experimental and numerical analyses on the capacity and the control management of a large flood retention basin situated at the Inn River in Tyrol

机译:位于蒂罗尔州因河的大型防洪盆地容量和控制管理的试验和数值分析

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The consideration of recent extreme events in flood statistics implies an increase of design flood peaks and discharge loads. With the focus on the 75 km long Tyrolean Inn River reach downstream the regional capital city Innsbruck, the harmonization of the 100-year flood peak and comprehensive 2d-hydrodynamic modelling simulations indicate the need for an extension of the existing flood protection measures. Lateral protection and object protection measures represent the only feasible option due to the confined areal conditions. However, an increase of the channel capacities would worsen the situation for downstream areas demonstrably. In order to counter this impact, it is planned to build several large controlled flood retention basins situated along the Inn River at the valley floor between Innsbruck and the border to Germany. The retention basin “Vold?pp” as one of these flood polders features a maximum capacity of 1.7 million m3 and a maximum design water depth of 3.6 m. According to current planning the inlet structure consists of four uniform weir fields with two gates each. Aims of the presented experimental and numerical analyses are the investigation of the flow characteristics in close range of the inlet structure, the weir capacity and a possible weir control management. Hydraulic model tests are accomplished at the scale 1:35 according Froude similarity and numerical modelling is done with the software FLOW-3D. Preliminary modelling results confirmed the functionality of the inlet structure and pointed out the need of further tests concerning the potential impacts of intense sediment transport and woody debris.
机译:洪水统计中对最近极端事件的考虑意味着设计洪水高峰和排放负荷的增加。蒂罗尔旅馆河(Tyrolean Inn River)长75公里,到达区域首府因斯布鲁克(Innsbruck)的下游,对100年洪峰和统一的二维流体力学模拟进行了协调,表明需要扩展现有的防洪措施。由于区域条件的限制,横向保护和物体保护措施是唯一可行的选择。但是,通道容量的增加将使下游地区的情况明显恶化。为了应对这种影响,计划在因斯布鲁克和德国边境之间的山谷地带,沿着因河而建几个大型的防洪盆地。这些洪水flood之一的蓄水池“ Vold?pp”的最大容量为170万立方米,最大设计水深为3.6 m。根据目前的计划,入口结构由四个均匀的堰场组成,每个堰场都有两个闸门。提出的实验和数值分析的目的是研究进气道结构近距离内的流动特性,堰容量和可能的堰控制管理。根据Froude相似性,以1:35的比例完成水力模型测试,并使用软件FLOW-3D进行数值建模。初步的建模结果证实了入口结构的功能,并指出了需要进一步测试的问题,这些问题涉及强烈的泥沙输送和木屑的潜在影响。

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