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Numerical investigation of steady state characteristics and stability of supercritical water natural circulation loop of a heater and cooler arrangements

机译:加热器和冷却器布置超临界水天然循环回路稳态特性及稳定性的数值研究

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The present paper studies the thermal-hydraulic behaviour of the rectangular supercritical natural circulation loop (SCNCL) using numerical model of one dimensional. Then the results of this model is confirmed with experimental and benchmark results. Variations with several geometric parameters like loop diameter, riser length, and heater length and operating conditions like heater inlet enthalpy, pressure, friction factor, and inlet and exit loss coefficient on steady-state performance are investigated for various orientations like HHHC, HHVC, VHVC and VHHC of the heater and cooler. The chances of existing static instability (Ledinegg excursion) has been investigated, which reveals that it can arise only in a low inlet enthalpy condition, far from the suggested various orientations of heater and cooler.
机译:本文利用一维数值模型研究矩形超临界自然循环回路(SCNCL)的热液压行为。 然后使用实验和基准结果确认该模型的结果。 对于循环直径,提升管长度和加热器长度和加热器入口焓,压力,摩擦因子和入口等操作条件的变化,为HHHC,HHVC,VHVC等各种方向研究了稳态性能的加热器入口焓,压力,摩擦系数和入口和出口损失系数。 和加热器和冷却器的VHC。 已经研究了现有静态不稳定(LedineGG Geachion)的机会,揭示它只能在低入口焓条件下出现,远非提出的加热器和冷却器的各种方向。

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