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Generalized stability theory of vapor film in subcooled film boiling on a sphere

机译:球上沸腾过冷膜中蒸气膜的广义稳定性理论

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The previously proposed stability theory of vapor film in subcooled film boiling on a sphere was generalized to take account of interaction between base flow and perturbed components. A disturbance of standing wave type was assumed to be superimposed on the base flows of surrounding liquid and vapor film. For the surrounding liquid, the wave equation was applied to the whole region including the boundry layer and the energy equation was solved analytically by introducing a simplifying assumption. For the vapor film, the basic equations were solved by an integral method. By use of compatibility conditions at the liquid-vapor interface, the solutions for the surrounding liquid and the vapor film were combined to yield an algebraic relation among the vapor film thickness, the order of disturbance and the complex amplification factor of disturbance. The numerical solutions of critical vapor film thickness at which the real part of complex amplification factor was equal to zero were obtained for the disturbances of the zeroth, first and second orders. The numerical results indicated that the vapor film was most unstable for the disturbance of the zeroth order (i.e., uniform disturbance). The calculated value of the critical vapor film thickness for the uniform disturbance compared well with the average vapor film thickness at the minimum-heat-flux point obtained from the immersion cooling experiments of spheres in water at high liquid subcoolings.
机译:考虑到基流和扰动分量之间的相互作用,对以前提出的在球上沸腾的过冷膜中蒸气膜的稳定性理论进行了概括。假定驻波型扰动被叠加在周围的液体和蒸气膜的基流上。对于周围的液体,将波动方程应用于包括边界层在内的整个区域,并通过引入简化假设来解析求解能量方程。对于蒸气膜,通过积分法求解基本方程。利用液-气界面处的相容性条件,将周围液体和汽膜的溶液合并,得到汽膜厚度,扰动阶次和扰动的复数放大因子之间的代数关系。对于零阶,一阶和二阶扰动,获得了复数放大因子的实部等于零的临界蒸汽膜厚度的数值解。数值结果表明,对于零级扰动(即均匀扰动),蒸汽膜最不稳定。均匀扰动的临界蒸气膜厚度的计算值与通过在高液体过冷度下将球浸入水中的最小冷却通量点获得的最小热通量点处的平均蒸气膜厚度进行了比较。

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