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Study of boundary conditions for design of new types of fibre concrete energy dissipators in hydraulic structures

机译:液压结构中新型纤维混凝土能量散热器设计边界条件研究

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The paper describes experiments aimed at setting parameters for an efficient design of new types and shapes of energy dissipators on chutes of dam spillways.During major rainfall events,large water inflows into the reservoir induce a rise in the reservoir level,and a spillway system must be installed to spill safely the flood waters.Two key challenges during the spillway design are conveyance and energy dissipation.Energy dissipation on dam spillways can be achieved by a range of dissipator designs.One type of spillway is a block ramp.Block ramps are hydraulic structures which are often used in practical applications to assure a correct balance between hydraulic functioning and the environmental impact.One of the main peculiarities of this approach is the capacity to dissipate a larger energy amount than other traditional structures.Thus,significant efforts were spent by the scientific community around the world in order to optimize their energy dissipation efficiency.The use of fibre concrete for the design of reinforced block ramps can improve their resistance significantly.The presented experiments describe the boundary condition for the design of new fibre concrete dissipators based on the measurements performed on reinforced block ramps.
机译:本文介绍的实验目的是为新类型和在spillways.During重大降雨事件,大量的水流入水库诱发水库水位上升坝槽耗能的形状有效的设计参数设置和溢洪道系统必备安装安全溢洪道设计在洪水waters.Two主要挑战是运输和能源消耗dissipation.Energy大坝溢洪道可以由多种散热器designs.One式溢洪道来实现溢出是块ramp.Block坡道液压这往往是在实际应用中所采用的结构,以保证液压运作,这种方法的主要特点的环境impact.One之间的正确平衡以消耗比其他传统structures.Thus更大的能量的能力,显著的努力被花费为了在全世界科学界来优化其能量消耗效率。使用光纤混凝土钢筋块斜面的设计可以提高它们的电阻significantly.The呈现实验描述边界条件的基础上对增强块斜面执行的测量新纤维混凝土消散设计。

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