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Direct steam generation in parallel pipes

机译:在平行管道中直接产生蒸汽

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摘要

Two-phase flow in parallel pipes is associated with the application of direct steam generation (DSG) by solar heating using parabolic troughs focusing solar power. In this process water is fed into parallel pipes from a common manifold. Owing to local cloud cover of difference in the focusing quality, each pipe may receive a different heating power. In this case the flow rate in each pipe will be different. It is the purpose of this work to analyze a system of two parallel pipes with common inlet and outlet manifolds. Subcooled water that enters the system undergoes a process of heating and evaporation. The results show that the solution is not unique and one can obtain 1, 3 or 5 solutions, even for the case of equal heating of the two pipes. Each solution yields the flow rate in each pipe and the distribution of temperature, pressure, quality and holdup along the pipes. It was found that for most cases, the water tend to flow in the pipe which absorb less heat. This is an unfavorable conclusion from the practical operational point of view.
机译:平行管中的两相流与使用抛物线槽聚焦太阳能的太阳能加热技术直接产生蒸汽(DSG)有关。在此过程中,水从公共歧管馈入平行的管道中。由于聚焦质量不同的局部云层,每个管道可能会获得不同的加热功率。在这种情况下,每条管道中的流速将不同。这项工作的目的是分析一个由两个平行管道组成的系统,该管道具有共同的入口和出口歧管。进入系统的过冷水经历加热和蒸发的过程。结果表明,即使在两根管道均等加热的情况下,该解决方案也不是唯一的,而且可以得到1、3或5种解决方案。每种解决方案都会产生每个管道中的流速以及沿着管道的温度,压力,质量和滞留率的分布。已经发现,在大多数情况下,水倾向于在管道中流动,吸收的热量较少。从实际操作的角度来看,这是一个不利的结论。

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