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Self-compensating characteristic of steam-water mixture at low mass velocity in vertical upward parallel internally ribbed tubes

机译:垂直向上平行内肋肋管中低速汽水混合物的自补偿特性

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摘要

This paper presents an experimental investigation on Self-Compensating Characteristic (SCC) in vertical upward parallel tubes with low mass velocity of steam-water two-phase mixture. A physical model was built up using parallel internally ribbed tubes. A method called Differential Pressure Substitute was used to measure two-phase flow parameters. The results indicated that the SCC of vertical upward parallel tubes is caused by combined action of frictional pressure drop and gravitational pressure drop. The mass velocity in the tube with lower heat flux decreases first, and then increases with an increase in quality. The uneven heat fluxes among tubes are the main reasons that cause mass velocity differentials. Greater uneven heating ratio enhances the SCC in low quality region and weakens it in high quality region. The SCC has different variation rules in different pressure region. In the sub-critical pressure region, rising pressure weakens the SCC when quality is low and enhances it when quality is high. In near-critical pressure region, the mass velocity varies monotonically and slowly with the increase in quality because the difference between water and steam is minor in this pressure region. The results provide some instructive advices to improve the design and operation safety of once-through boiler.
机译:本文提出了一种在汽水两相混合物低质量速度的垂直向上平行管中的自补偿特性(SCC)的实验研究。使用平行的内部带肋管建立了物理模型。一种称为差压替代的方法用于测量两相流参数。结果表明,垂直向上平行管的应力腐蚀开裂是由摩擦压降和重力压降共同作用引起的。具有较低热通量的管中的质量速度首先下降,然后随着质量的增加而增加。管之间的热通量不均匀是引起质量速度差的主要原因。较高的不均匀加热比会在低质量区域增强SCC,而在高质量区域则会减弱SCC。 SCC在不同压力区域具有不同的变化规则。在亚临界压力区域,质量低时上升的压力会削弱SCC,质量高时会升高。在接近临界压力的区域,质量速度随质量的增加而单调缓慢变化,因为在此压力区域中水和蒸汽之间的差异很小。研究结果为提高直流锅炉的设计和运行安全提供了指导性意见。

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