Kinetic theory analysis of gas flows condensing on a plane condensed phase: Case of a mixture of a vapor and a noncondensable gas
Kinetic theory analysis of gas flows condensing on a plane condensed phase: Case of a mixture of a vapor and a noncondensable gas
复制标题
平面凝相上气流凝结的动力学理论分析:蒸气与不凝气体混合物的情况
DOI:
10.1080/00411459208203783
复制
发表时间:
1992
影响因子:
--
通讯作者:
T. Doi
中科院分区:
文献类型:
--
作者:
Y. Sone;K. Aoki;T. Doi
Abstract A semi-infinite expanse of a binary mixture of a vapor and a noncondens-able gas in contact with an infinite plane condensed phase of the vapor is considered in the case where there is a uniform high-speed flow of the vapor toward the condensed phase at infinity and steady condensation of the vapor is taking place on the condensed phase. The steady behavior of the gas mixture is investigated on the basis of the Boltzmann equation. Under the assumption that the molecules of the noncondensable gas are mechanically identical with the vapor molecules, the problem, which is originally a boundary-value problem of two coupled nonlinear equations, is reduced to two problems of single equations: a nonlinear problem for the total mixture, which is equivalent to the condensation problem for a pure vapor studied extensively by the authors in the previous papers, and a linear homogeneous problem for the non-condensable gas. After the discussion of the general feature of the problem, the numerical computation ...