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Improvement of the MARS subcooled boiling model for low-pressure, low-Pe flow conditions

机译:针对低压,低Pe流量条件的MARS过冷沸腾模型的改进

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The subcooled boiling model of a thermal-hydraulic system code, MARS, has been assessed against subcooled boiling experiments in vertical pipes under low-pressure and low-Pe(Peclet number) conditions. The results showed that the MARS subcooled boiling model cannot take into account appropriately the effects of inlet liquid velocity and hydraulic diameter on axial void fraction development. To solve the problems, a new correlation for the net vapor generation (NVG) point is suggested and the wall evaporation model, which is one of the sub-models of the subcooled boiling model, has been semi-empirically modified. The modified models were implemented into MARS and validated using experimental data of 77 different thermal-hydraulic conditions with pressures ranging from 1.1 to 9.8 bar, heat fluxes of 97–1186 kW/m2, mass fluxes of 65–635 kg/m2s, and hydraulic diameters of 5–21 mm. It was shown that the results of the modified model have better agreements with experimental data under low-pressure (P < 9.83 bar) and low-Pe(Pe ≤ 70,000) conditions.
机译:热压系统代码MARS的过冷沸腾模型已经针对低压和低Pe(Peclet数)条件下垂直管道中的过冷沸腾实验进行了评估。结果表明,MARS过冷沸腾模型不能适当考虑入口液体速度和水力直径对轴向空隙率发展的影响。为了解决这些问题,提出了一种新的净蒸汽产生(NVG)点相关性,并且对半蒸发模型的壁蒸发模型(半冷却沸腾模型的子模型之一)进行了半经验修正。修改后的模型已在MARS中实施,并使用77种不同热工条件的实验数据进行了验证,压力条件为1.1至9.8 bar,热通量为97-1186 kW / m2,质量通量为65-635 kg / m2s,水力直径为5-21毫米。结果表明,在低压(P <9.83 bar)和低Pe(Pe≤70,000)条件下,改进模型的结果与实验数据具有较好的一致性。

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