The constraint condition for the strain energy density function of incompressible hyperelasticity is proposed.
通过对各种有限元方法的分析比较,适当修改了已有的应变能密度函数的形式使之更适合数值计算。
The constraint condition for the strain energy density function of incompressible hyperelasticity is proposed.
通过对各种有限元方法的分析比较,适当修改了已有的应变能密度函数的形式使之更适合数值计算。
As in the incompressible flow, the Field and Matter Bicharacteristics of Vortex also have been demonstrated.
如同不可压流,在可压缩流涡同样具有场与物质两重特征。
The energy equations with the boundary conditions of temperature jump are solved for the hydrodynamical and thermal fully developed laminar flow of the incompressible fluid in this microchannel.
讨论了稀薄效应、内外径比对等壁温加热条件下微环缝槽道内换热特性的影响。
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