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Buoyancy driven convection in near-critical and supercritical fluids

机译:近临界和超临界流体中的浮力驱动对流

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Buoyancy driven thermal transport in a pure fluid (carbon dioxide) near its gas-liquid critical point is investigated using a two-dimensional numerical model. A square enclosure is considered with side heating. For all cases considered, the initial pressure and temperature of carbon dioxide is p_i (>p_c) and T_i, (>T_C) respectively. The two side-walls of the enclosure are initially at temperature T_i, and the left wall temperature is temporally raised to T_(L∞). The model considers the strong variable property effects (functions of both temperature and pressure) near the critical point, including the bulk viscosity variations. As thermal diffusivity approaches zero near the critical point, the divergence of thermo-physical properties near the critical point gives rise to large Rayleigh number flows even for very small temperature differences. The steady-state convective heat transfer coefficient near the critical point is investigated and a correlation for the steady state, spatially averaged Nusselt number along the vertical walls is developed as a function of the Rayleigh number and the ratios (p_i - p_c)lp_c, (T_m - T_c)/T_c and T'_(pc) - (T_(pc) - T_C)/T_C, where T_m = (T_i + T_(L∞))/ 2. The subscripts 'I', 'm', 'c', 'pc' and refer to the initial, mean, critical, pseudo-critical conditions respectively while the subscript 't∞' refers to the final value of the left (heated) wall temperature. The effect of critically diverging bulk viscosity on the flow field and heat transport induced by buoyancy in near-critical fluids is also investigated.
机译:使用二维数值模型研究了在气液临界点附近的纯流体(二氧化碳)中由浮力驱动的热传递。方形外壳被认为带有侧面加热。对于所有考虑的情况,二氧化碳的初始压力和温度分别为p_i(> p_c)和T_i(> T_C)。外壳的两个侧壁最初处于温度T_i,左壁温度暂时升高到T_(L∞)。该模型考虑了临界点附近的强烈可变属性效应(温度和压力的函数),包括整体粘度变化。当临界点附近的热扩散率接近零时,临界点附近的热物理性质发生发散,即使在非常小的温差下,也会产生较大的瑞利数流。研究了临界点附近的稳态对流传热系数,并根据瑞利数和比率(p_i-p_c)lp_c((p_i-p_c)lp_c,( T_m-T_c)/ T_c和T'_(pc)-(T_(pc)-T_C)/ T_C,其中T_m =(T_i + T_(L∞))/2。下标'I','m', “ c”,“ pc”分别是指初始,平均,临界,伪临界条件,而下标“t∞”是指左侧(加热)壁温的最终值。还研究了在近临界流体中,临界分散体粘度对流场和浮力引起的热传递的影响。

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