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Losses Due to Conduit Components: An Optimization Strategy and Its Application

机译:导线管组件造成的损耗:一种优化策略及其应用

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摘要

In the present study, we introduce a method which we call the glass box optimization (GBO) method as a strategy how to reduce flow losses whenever numerical data based on computational fluid dynamics (CFD)-results are available. Based on local values of the velocity and entropy generation fields, a systematic analysis of the loss mechanisms involved is used in order to develop control mechanisms for the reduction of losses due to a conduit component. Furthermore, it is shown how the losses are distributed between a component itself and the adjacent flow field. Since often a large amount of the losses occurs outside of the actual component, it is discussed under which circumstances an optimized component leads to improved efficiency of an entire fluid flow network. The method is exemplified for turbulent flow through a 90 deg bend.
机译:在本研究中,我们介绍一种称为玻璃箱优化(GBO)方法的策略,该策略是在基于计算流体动力学(CFD)结果的数值数据可用时如何减少流量损失的策略。基于速度场和熵产生场的局部值,对所涉及的损耗机制进行了系统分析,以便开发控制机制以减少由于导管部件引起的损耗。此外,示出了损耗如何在部件本身和相邻的流场之间分配。由于通常在实际部件之外会发生大量损失,因此将讨论在这种情况下,优化部件会导致整个流体流动网络的效率提高。该方法以流过90度弯头的湍流为例。

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