首页> 外文期刊>Journal of thermal stresses >THERMAL STRESSES IN A FLUID-SATURATED POROELASTIC HOLLOW SPHERE
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THERMAL STRESSES IN A FLUID-SATURATED POROELASTIC HOLLOW SPHERE

机译:流体饱和多孔弹性空心球中的热应力

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By using the thermoporoelastic theory proposed previously, thermal stresses are analyzed that are induced in a fluid-saturated porous hollow sphere subjected to a sudden rise in temperature and pressure on its inner wall. Since the problem formulated is spherically symmetric, the displacement field is decoupled from the temperature and pore fluid pressure fields, which are still coupled with each other. Coupled diffusion equations for heat and fluid flows are solved by the Crank-Nicolson implicit method because they involve nonlinear and integral terms. The attention is focused on the effect of heat transfer by fluid flow through pores on the temperature and thermal stress distributions. This effect is very marked for the case where the fluid diffusivity is much larger than the thermal one. This suggests a possible control of thermal stresses by active fluid injection.
机译:通过使用先前提出的热多孔弹性理论,分析了在流体饱和的多孔空心球内壁上温度和压力突然升高时引起的热应力。由于提出的问题是球对称的,因此位移场与仍然相互耦合的温度和孔隙流体压力场解耦。通过Crank-Nicolson隐式方法求解热和流体流动的耦合扩散方程,因为它们涉及非线性项和积分项。注意力集中在流体流经孔的传热对温度和热应力分布的影响上。对于流体扩散率远大于热扩散率的情况,此效果非常明显。这表明可以通过主动流体注入来控制热应力。

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