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Flow instabilities in a horizontal thermosyphon reboiler loop

机译:水平热虹吸再沸器回路中的流量不稳定性

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摘要

Thermosyphon systems have been the subject of several studies due to instability issues negating their attractive high heat fluxes, low temperature gradients requirement, reduced weight and simple, pump-less system. There is a dearth of design data for horizontal thermosyphons hence the transient behaviour of a horizontal thermosyphon reboiler loop has been studied experimentally here. Most studies here have explored and defined geysering instability in single and parallel vertical columns with closed bottom end. This study presents geysering detected in 51 mm riser of a horizontal thermosyphon reboiler.\udExperiments were undertaken with water as the process fluid and steam as the heating medium, using 6 – 20 kW/m2 heat flux, 1.165 – 1.265 m static head and a range of recycle flow restrictions. Pressure, temperature and flow rate data were continuously logged at 100Hz. Flow rate was examined as a significant indicator of instability since it is the parameter with highest and varied amplitude of oscillation. Heat flux is most significant for stability: above 20 kW/m2, the system is stable; between 11 – 20 kW/m2 there are varying degrees of sustained oscillations and below 11 kW/m2 flow rate is low. Reboiler inlet flow restriction also stabilises the system by reducing the flow rate to such a level that heat transfer rate can maintain a consistent vapour product rate. Static head influences the recirculation rate and subcooling at the reboiler inlet, but has a secondary effect on stability. Churn flow pattern is detected in the riser as a characteristic aftereffect of the cyclic instability.
机译:由于不稳定的问题,热虹吸系统由于缺乏吸引人的高热通量,较低的温度梯度要求,减轻的重量以及简单的无泵系统而成为许多研究的主题。缺乏水平热虹吸管的设计数据,因此这里已经通过实验研究了水平热虹吸重沸器回路的瞬态行为。此处的大多数研究都探索并定义了底端封闭的单列和平行立柱中的间歇泉不稳定性。本研究介绍了在水平热虹吸再沸器的51毫米立管中检测到的间歇泉。\ ud以6 – 20 kW / m2的热通量,1.165 – 1.265 m的静压头和一个以循环流量限制范围。压力,温度和流速数据以100Hz连续记录。流量被视为不稳定的重要指标,因为它是振荡振幅最高且变化的参数。热通量对于稳定性最重要:20 kW / m2以上,系统稳定;在11 – 20 kW / m2之间,会有不同程度的持续振荡,而低于11 kW / m2时,流量较低。再沸器入口流量的限制还通过将流量降低到一定的水平来稳定系统,该水平使得传热速率可以保持一致的蒸气生成速率。静压头会影响再沸器入口的再循环率和过冷度,但会对稳定性产生次要影响。在立管中检测到搅动流型,作为周期性不稳定性的典型后效应。

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