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Flow rate distribution in parallel heated pipes

机译:平行加热管中的流量分布

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The flow of evaporating fluids in parallel pipes, takes place in many applications such as heat exchangers, power plants, cooling systems and in the nuclear industry. It is a common knowledge that maldistribution of the flow rates may occur in evaporating liquid flowing in parallel pipes with common inlet and outlet manifolds. The theoretical model developed by Minzer et al. (2006) [1 ] for the flow rate distribution is extended to a larger number of pipes and different heating conditions. Stable and unstable solutions are identified and the model predictions are experimentally validated for different configurations involving four parallel pipes. It is shown that the behavior of the system may depend on the history of the process exhibiting a hysteresis phenomenon. Transient simulations are carried out using this model in order to study the system response to finite disturbances. It was shown that transient solutions converge to the stable steady states, consistent with the linear stability analysis.
机译:平行管道中蒸发流体的流动发生在许多应用中,例如热交换器,发电厂,冷却系统以及核工业。公知的是,在具有共同的入口和出口歧管的平行管中蒸发液体时,可能会发生流速分布不均的情况。 Minzer等人开发的理论模型。 (2006)[1]的流量分布扩展到更多的管道和不同的加热条件。确定了稳定和不稳定的解决方案,并针对涉及四个平行管道的不同配置,通过实验验证了模型预测。结果表明,系统的行为可能取决于出现迟滞现象的过程的历史记录。为了研究系统对有限扰动的响应,使用该模型进行了瞬态仿真。结果表明,瞬态解收敛到稳定稳态,与线性稳定性分析一致。

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