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首页> 外文期刊>Journal of Energy Engineering >Effects of Velocity Head and Momentum Exchange on Critical Stable Sectional Area of Downstream Throttled Surge Tank
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Effects of Velocity Head and Momentum Exchange on Critical Stable Sectional Area of Downstream Throttled Surge Tank

机译:速度头和动量交换对下游节流调压罐临界稳定截面积的影响

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摘要

The velocity head and momentum exchange at the T-junction between the surge tank with a riser and the tail water tunnel of hydroelectric pow-erplants have been introduced by using the Gardel's head-loss formula. The effects of the velocity head and momentum exchange on the critical sectional area of the downstream tank have been analyzed. With Thoma's assumption, the critical stable sectional area of the downstream throttled surge tank is derived theoretically. The study shows that the velocity head has an unfavorable effect on water level stability in the downstream surge tank while the effect of the momentum exchange is positive. These two effects counteract. Thus, the critical sectional area of a downstream throttled surge tank is close to that of a corresponding simple surge tank. However, if the size and shape of a riser are optimized, the area of the downstream surge tank may be further reduced. It is also demonstrated that a downstream throttled surge tank can reduce electricity loss and easily meet the requirements of stability in large flow oscillations when compared to a simple downstream tank.
机译:通过使用Gardel的水头损失公式,介绍了带有提升管的调压罐与水力发电装置的尾水隧道之间的T形结处的速度头和动量交换。分析了速度扬程和动量交换对下游水箱临界截面积的影响。在Thomas的假设下,理论上得出了下游节流调压罐的临界稳定截面积。研究表明,速度头对下游调压罐的水位稳定性有不利影响,而动量交换的影响则为正。这两个作用相互抵消。因此,下游节流调压罐的临界截面积接近相应的简单调压罐的截面积。但是,如果优化冒口的尺寸和形状,则可以进一步减小下游调压罐的面积。还证明了与简单的下游油箱相比,下游节流式油箱可以减少电力损失并轻松满足大流量振荡时的稳定性要求。

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