1) solid wall
固壁
1.
When the effect of buoyancy force is neglected,surface tension effect on the axisymmetric growthand collapse of two cavities near and above a solid wall is investigated numerically by boundary integral method.
在忽略浮力下,用边界积分方法数值模拟了表面张力对固壁之上且靠近固壁的二轴对称空化泡生长和溃灭的影响,发现在下空泡最大等效半径为上空泡一半情形,若固壁对下空泡的 Bjerknes 力大于上空泡对下空泡的 Bjerknes力,则表而张力的作用将使下空泡溃灭加速,使其向下的液体射流变强变宽;若固壁对下空泡的 Bjerknes 力小于上空泡对下空泡的 Bjerknes 力,则表面张力的作用将使下空泡溃灭变慢,使其向上射流变弱变细长;若这两个 Bjerknes 力近于相等,则表面张力将会对下空泡溃灭有重大作用,如改变下空泡射流的方向甚至形式(如由环状变向下或由向上变环状)。
2) rigid wall
固壁
1.
A boundary integral method was developed for simulating the motion and deformation of a viscous drop in an axisymmetric ambient Stokes flow near a rigid wall and for direct calculating the stress on the wall.
发展了一种模拟固壁近旁轴对称Stokes流中粘性液滴的运动和变形及直接计算固壁上应力的边界积分方法。
2.
With the consideration of surface tension the boundary integral method and numerical solution method for simulation of a cavitation bubble collapsing near a rigid wall are derived.
导出了考虑表面张力影响下模拟固壁附近溃灭空化气泡特性的边界积分方法及数值求解方法。
3) motive shock wave reflected on fixed wall
固壁反射
4) coal wall strengthenign
煤壁加固
5) heat conduction between solid walls
固壁导热
6) wall bracing technology
固壁技术
补充资料:固壁
1.犹固垒。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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