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首页> 外文期刊>International Journal of Heat and Mass Transfer >Experimental investigation on heat transfer characteristics of low mass flux rifled tube with upward flow
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Experimental investigation on heat transfer characteristics of low mass flux rifled tube with upward flow

机译:低质量通量线孔上升管传热特性的实验研究。

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An experiment for heat transfer of water flowing in a vertical rifled tube was conducted at subcritical and supercritical pressure. The main purpose is to explore the heat transfer characteristics of the new-type rifled tube at low mass flux. Operating conditions included pressures of 12-30 MPa, mass flux of 2321200 kg/(m~2 s), and wall heat fluxes of 133-719 kW/m2. The heat transfer performance and wall temperature distribution at various operating conditions were captured in the experiment. In the present paper, the heat transfer mechanism of the rifled tube was analyzed, the effects of pressure, wall heat flux and mass flux on heat transfer were discussed, and corresponding empirical correlations were also presented. The experimental results exhibit that the rifled tube has an obvious enhancement in heat transfer, even at low mass flux. In comparison with a smooth tube, the rifled tube efficiently prevents Departure from Nucleate Boiling (DNB) and delays dryout at subcritical pressure, and also improves the heat transfer of supercritical water remarkably, especially near pseudo-critical point. An increase in pressure or wall heat flux impairs the heat transfer at both subcritical and supercritical pressure, whereas the increasing mass flux has a contrary effect.
机译:在亚临界和超临界压力下进行了垂直立管中流动的水的传热实验。主要目的是探索新型低质量通量管膛的传热特性。操作条件包括压力12-30 MPa,质量通量2321200 kg /(m〜2 s)和壁热通量133-719 kW / m2。实验中记录了各种工况下的传热性能和壁温分布。本文分析了有膛管的传热机理,探讨了压力,壁面热通量和质量通量对传热的影响,并给出了相应的经验关系。实验结果表明,即使在低质量通量的情况下,有膛线的管子也具有明显的传热增强。与光滑管相比,有膛管有效地防止了从核沸腾(DNB)脱离并延迟了在亚临界压力下的变干,并且还显着改善了超临界水的传热,特别是在伪临界点附近。压力或壁热通量的增加会损害亚临界和超临界压力下的传热,而质量通量的增加会产生相反的影响。

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