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Experimental Investigation on Heat Transfer and Frictional Characteristics of Vertical Upward Rifled Tube in the Advanced Ultra Supercritical Steam Generator

机译:先进超超临界蒸汽发生器中垂直向上膛线传热和摩擦特性的实验研究

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摘要

This paper experimentally studied the heat transfer and frictional characteristics of a single rifled tube with vertical upward flow under the parametric range of pressures P=10.5-32 MPa, mass fluxes G=300-1300 kg·m~(-2)·s~(-1), heat fluxes q=275-845 kW·m~(-2). The results show that in the subcritical pressure region, dryout is the predominant mode of heat transfer deterioration. In the near critical pressure region, departure from nuclear boiling (DNB) occurs when the q/G value increases. In the supercritical pressure region, heat transfer and frictional characteristics will be strongly influenced by the sharp changes of the thermo-physical properties of supercritical water when the value of mass flux is approximately lower than 1000 kg · m~(-2) · s~(-1) in this experiment. The mass flux and the pressure are two crucial factors to the variations of total pressure drop and frictional pressure drop. An empirical correlation is selected to estimate the frictional pressure drop. The results indicate that in the low mass flux circumstances, the calculated value significantly underestimates the experimental data in the large specific heat region. Whereas, when the value of mass flux is larger than 1000 kg · m~(-2) · s~(-1), the calculated value agrees well with the experimental data.(CSPE)
机译:本文实验研究了单膛管的传热和摩擦特性,在压力的参数范围内具有垂直向上流动的垂直向上流动P = 10.5-32MPa,质量助熔剂G = 300-1300 kg·m〜(-2)·s〜 (-1),热通量q = 275-845 kw·m〜(-2)。结果表明,在亚临界压力区域中,干燥是传热劣化的主要模式。在近临界压力区域中,当Q / g值增加时,会出发核沸腾(DNB)。在超临界压力区,热传递和摩擦特性会强烈地受到超临界水热物理属性的急剧变化的影响时的质量流量的值大约低于1000千克。米〜(-2)·S〜 (-1)在这个实验中。质量磁通量和压力是总压降和摩擦压降变化的两个关键因素。选择经验相关性以估计摩擦压降。结果表明,在低质量通量的情况下,计算值显着低估了大特定热区域中的实验数据。而且,当质量磁通量大于1000kg·m〜(-2)·s〜(-1)时,计算值与实验数据一致。(cspe)

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