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Dams with head increaser effect: Harnessing potential and kinetic power from rivers with large head and flow variation

机译:具有水头增加效应的水坝:利用水头和流量变化大的河流的潜力和动能

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摘要

There is an enormous untapped potential for hydropower generation in rivers with large head and high flow variation, currently not feasible for conventional hydropower dams. Conventional dams make use of the potential energy, but waste kinetic energy from spillage during periods of high flows. This article studies the possibility of harnessing energy from potential and kinetic energy from hydropower dams with large head and flow variation, analyses its potential, and shows possible technologies. Focus is given to a Moveable Hydro Electric Power Plant (HEPP) system in which the turbine module can be adjusted according to the flow and water level in the river. During floods the exceeding flows can pass above and below the Moveable HEPP results in a sub-pressure environment after the turbine module, thereby reducing the dam's downstream head, increasing the pressure difference between the turbine inlet and outlet and the flow through the turbine, which increases the electricity generation of the dam. Dams with head increaser arrangement have been implemented in several dams in the 1930-1950s and now are regaining attention in Middle Europe. The main intention for its implementation is harnessing hydropower generation at run-of-river plants, with low-head, with a 20%-30% cost reduction, lower flooded area at the dam site, the resulting evaporation and the impact on the aquatic fauna.
机译:在大水头和高流量变化的河流中,水力发电潜力巨大,目前对于常规水力大坝是不可行的。传统的大坝利用了势能,但是在高流量期间会从溢出中浪费动能。本文研究了利用水头和流量变化较大的水电大坝的势能和动能来利用能量的可能性,分析了其潜力,并展示了可能的技术。重点放在可移动水力发电厂(HEPP)系统上,该系统中的涡轮模块可以根据河流中的流量和水位进行调节。在洪水期间,多余的流量可能会在可移动HEPP的上方和下方通过,从而在涡轮模块之后产生负压环境,从而减小了大坝的下游水头,从而增大了涡轮进出口之间的压力差以及通过涡轮的流量。增加大坝的发电量。 1930-1950年代在几座水坝中都安装了带有水头增高器的水坝,现在在中欧引起了越来越多的关注。实施该项目的主要目的是利用低水头的河道上游发电厂的水力发电,将成本降低20%-30%,降低坝址的水灾面积,从而导致蒸发和对水生生物的影响动物区系。

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