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Evaporation from a nonspherical aerosol particle situated in an absorbing gas

机译:来自吸收气体中的非球形气溶胶颗粒的蒸发

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The problem of an aerosol particle evaporating in an infinite expanse of an absorbing gas is considered.The relevant Helmholtz equation (resulting from the steady-state diffusion equation with an absorption term included) with density jump boundary conditions is converted into a boundary integral equation via the use of the Green's function.The resulting integral equation is valid for particles of arbitray shape.Explicit numerical results for the local and average evaporation rates are reported for several axisymmetric particles for a range of values of the dimensionless absorption parameter(#lambda#~2),where#lambda# is the ratio of the radius of the particle(a)to the diffusion sength (l).Here,the diffusion length is defined as l=[D/(v#SIGMA#_a)]~(1/2),in which v (cm s~-1) is the average thermal speed of the vapor molecules,#SIGMA#_a(cm~-1) is the cross-section for absorption of the vapor by the gas,and D(cm~2s~-1)is the diffusion coefficient of the vapor in the gas.Our numerical results for the local and average evaporation rates for a sphere exhibit excellent agreement with the corres-ponding analytical values (maximum deviation <0.4.%).We find that the evaporation rate increases with increasing absorption and that this increase depends on the degree of departure of the particle from a spherical shape.The jump distance has a large impact in that is significantly lowers the evappration rates as it increases in magnitude.It should be remarked that the results of this paper are also directly applicable to the problem of either neutrons or photons undergoing diffusion from a source situated in an absorbing mdium.directC1998 Elsevier Science Std.All rights reserved.
机译:考虑了在无限大范围的吸收气体中气溶胶粒子蒸发的问题,将相关的Helmholtz方程(由包含吸收项的稳态扩散方程得出)与密度跃迁边界条件转换为边界积分方程。使用格林函数的结果。积分方程对任意形状的粒子都是有效的。对于无量纲吸收参数(#lambda#〜)的值,报告了几个轴对称粒子的局部和平均蒸发速率的显式数值结果。 2),其中#lambda#是粒子(a)的半径与扩散强度(l)的比值。 1/2),其中v(cm s〜-1)是蒸气分子的平均热速度,#SIGMA#_a(cm〜-1)是被气体吸收蒸气的横截面,并且D(cm〜2s〜-1)是蒸汽在气体中的扩散系数。球形的局部和平均蒸发速率ts与相应的分析值(最大偏差<0.4。%)具有极好的一致性。我们发现蒸发速率随吸收率的增加而增加,并且这种增加取决于偏离程度跳跃距离的影响很大,因为随着幅度的增大,跳跃速度会大大降低。因此需要指出的是,本文的结果也可直接应用于中子或中子问题。光子从位于吸收性钕中的源进行扩散.directC1998 Elsevier Science Std。保留所有权利。

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