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Experimental investigation of condensation performance in pressurised tank during vapour inlet process

机译:蒸汽入口过程中加压槽中冷凝性能的实验研究

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The vapour-liquid condensation phenomenon in a pressure tank in a thermally stratified state was experimentally investigated. Vapour under designated conditions was injected into the pressure tank, which contained low-temperature test fluid (R290) in a saturated liquid state, for identification of the condensation phenomenon in the thermal stratification state. The vapour-liquid condensation phenomenon was qualitatively and quantitatively analysed by investigating the heat and mass transfer. The vapour injected was partially condensed, yielding a non-equilibrium state between the vapour and liquid inside the tank. Further, a temperature stratification phenomenon occurred between the upper and lower regions of the liquid. This non-equilibrium state constituted a different result to that for vapour-liquid condensation obtained through thermodynamic modelling assuming an equilibrium state. The factors affecting the vapour-liquid condensation phenomenon included the mass and initial pressure of the liquefied inventory in the test cell, along with the pressure, and flow rate of the inlet vapour flow. Thus, the vapour-liquid condensation phenomenon was experimentally clarified in this study by setting those factors as variables. Four sets of experiments were performed to confirm the effect of each variable. The higher the enthalpy of the inlet vapour flow, the faster the pressure rose. Further, a higher pressure corresponded to a lower energy requirement for condensation. A lower initial energy of the liquid region in the test cell corresponded to a faster condensation rate, and the liquid level fraction did not affect the condensation rate. Mathematical modelling predicted the pressure behaviour to within a 8% error.
机译:实验研究了在热分层状态下压力罐中的蒸汽凝结现象。将指定条件下的蒸汽注入压力罐中,该压力罐含有饱和液体状态的低温测试流体(R290),用于鉴定热分层状态下的冷凝现象。通过研究热量和传质,定性和定量分析汽液冷凝现象。注入的蒸汽部分凝结,在罐内的蒸汽和液体之间产生非平衡状态。此外,在液体的上部和下部区域之间发生温度分层现象。这种非平衡状态构成了通过假定平衡状态通过热力学建模获得的蒸汽液凝结的不同结果。影响汽液冷凝现象的因素包括试验室中液化库存的质量和初始压力,以及入口蒸汽流的压力和流速。因此,通过将这些因子设定为变量,在该研究中实验阐明了蒸汽缩合现象。进行四组实验以确认每个变量的效果。入口蒸汽流的焓越高,压力升高。此外,更高的压力对应于缩小的缩小的较低能量要求。测试电池中的液位区域的较低初始能量对应于更快的缩合速率,液位级分没有影响冷凝率。数学建模将压力行为预测到8%的错误中。

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