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Thermodynamic Behavior and Heat Transfer in Closed Surge Tanks for Hydropower Plants

机译:水电厂封闭式调压箱的热力学行为和传热

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摘要

A numerical model of a hydraulic system with a closed surge tank is developed for evaluating the thermodynamic behavior during slow transients in the air pocket. The numerical model is used to evaluate the polytrophic equation against a Modified Rational Heat Transfer (MRHT) method, and the results are compared to field observations. The original RHT method considers heat transfer to walls and water as a lumped quantity, and the method is modified in this work to evaluate these two processes separately. The field observation dataset contains pressure and water level measurements from a 3,050m3 closed surge tank during a pressure increase from 805 to 1543kPa over 40min, thus providing a unique opportunity to investigate the thermodynamic behavior during slow transients. This paper will show how the accuracy of modeling slow transient events in a closed surge tank may be improved by applying the MRHT method, which accounts for heat transfer to enclosing media.
机译:建立了带有封闭式调压箱的液压系统的数值模型,用于评估气袋中缓慢过渡期间的热力学行为。数值模型用于根据修正的有理传热(MRHT)方法评估多营养方程,并将结果与​​现场观察结果进行比较。最初的RHT方法将传给墙壁和水的热量视为集总量,因此在本工作中对其进行了修改,以分别评估这两个过程。现场观测数据集包含在40分钟内将压力从805增加到1543kPa时,从3,050m3封闭式调压罐中获得的压力和水位测量值,从而提供了一个独特的机会来研究缓慢瞬变期间的热力学行为。本文将展示如何通过应用MRHT方法来提高封闭式调压罐中缓慢瞬态事件建模的准确性,该方法考虑了热量向封闭介质的传递。

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