首页> 外文期刊>Nonlinear analysis. Real world applications >On a Navier–Stokes–Fourier-like system capturing transitions between viscous and inviscid fluid regimes and between no-slip and perfect-slip boundary conditions
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On a Navier–Stokes–Fourier-like system capturing transitions between viscous and inviscid fluid regimes and between no-slip and perfect-slip boundary conditions

机译:在Navier-Stokes-Fourier的系统上,捕获粘性和粘性液体制度之间的过渡,并且在防滑和完善的边界条件之间

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AbstractWe study a generalization of the Navier–Stokes–Fourier system for an incompressible fluid where the deviatoric part of the Cauchy stress tensor is related to the symmetric part of the velocity gradient via a maximal monotone 2-graph that is continuously parametrized by the temperature. As such, the considered fluid may go through transitions between three of the following regimes: it can flow as a Bingham fluid for a specific value of the temperature, while it can behave as the Navier–Stokes fluid for another value of the temperature or, for yet another temperature, it can respond as the Euler fluid until a certain activation initiates the response of the Navier–Stokes fluid. At the same time, we regard a generalized threshold slip on the boundary that also may go through various regimes continuously with the temperature. All material coefficients like the kinematic viscosity, friction or activation coefficients are assumed to be temperature-dependent. We establish the large-data and long-time existence of weak solutions, applying theL-truncation technique to approximate the velocity field.]]>
机译:<![cdata [ 抽象 我们研究了Nauch-Stokes-Fourier系统的概括,用于不可压缩的流体,其中Cauchy应力张量的偏离部分与对称有关部分速度梯度通过温度连续参数的最大单调2图。这样,所考虑的流体可以经过以下三个制度之间的过渡:它可以作为弯曲流体流动,以进行温度的特定值,同时它可以表现为Navier-Stokes流体,以进行温度的另一个值或,对于另一个温度,它可以作为欧拉流体响应,直到一定的激活引发Navier-Stokes流体的响应。同时,我们认为在边界上的广义阈值滑动也可以连续地通过温度持续进行各种制度。假设运动粘度,摩擦或活化系数的所有材料系数是温度依赖性的。我们建立了弱解决方案的大数据和长期存在,应用 l -truncation技术近似速度字段。 ]]>

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