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Effect of pressure on critical heat flux in uniformly heated vertical annulus under low flow conditions

机译:低流量条件下压力对均匀加热垂直环空临界热通量的影响

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Critical heat flux (CHF) experiments have been carried out in a wide range of pressure for an internally heated vertical annulus. The experimental conditions covered a range of pressure from 0.57 to 15.01 MPa, mass fluxes of 0 kg m~-2 s~-1 and from 200 to 650 kg m~-2 s~-1, and inlet subcoolings from 85 to 413 kJ kg~-1. Most of the CHFs were identified to the dryout of the liquid film in the annular-mist flow. For the mass fluxes of 550 and 650 kg m~-2 s~-1, the CHFs had a maximum value at a pressure of 2-3 MPa, and the pressure at the maximum CHF values had a trend moving toward the pressure at the peak value of pool boiling CHF as the mass flux decreased. The CHF data under a zero mass flux condition indicate that both the effects of pressure and inlet subcooling on the CHF were smaller, compared with those for the CHF with a net water upflow. The Doerffer correlation using the 1995 CHF look-up table and the Bowring correlation show a good prediction capability for the present CHF data.
机译:对于内部加热的垂直环空,已在很宽的压力范围内进行了临界热通量(CHF)实验。实验条件涵盖了0.57至15.01 MPa的压力范围,0 kg m〜-2 s〜-1的质量通量和200至650 kg m〜-2 s〜-1的质量通量以及85至413 kJ的入口过冷度公斤〜-1。多数CHF被确定为环形雾流中液膜变干的原因。对于550和650 kg m〜-2 s〜-1的质量通量,CHF在2-3 MPa的压力下具有最大值,而在最大CHF值的压力则趋向于在压力下移动。质量通量下降时,池沸腾CHF的峰值。在零质量通量条件下的CHF数据表明,与净水上流的CHF相比,压力和入口过冷对CHF的影响都较小。使用1995 CHF查询表的Doerffer相关性和Bowring相关性对当前的CHF数据显示出良好的预测能力。

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