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首页> 外文期刊>International Journal for Numerical Methods in Engineering >Thermal coupling of fluid flow and structural response of a tunnel induced by fire
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Thermal coupling of fluid flow and structural response of a tunnel induced by fire

机译:火灾引起的流体流热耦合与隧道结构响应

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摘要

In this work we present the progress in the development of an algorithm for the simulation of thermal fluid-structural coupling in a tunnel fire. The coupling strategy is based on a Dirichlet/Neumann non-overlapping domain decomposition of the problem, which is carried out by developing a master code that controls solvers dedicated to the fluid mechanics and to the solid mechanics simulation. The computational fluid dynamics formulation consists of a stabilized finite element approximation of the low Mach number equations based on the subgrid scale concept, that allows us to deal with convection-dominated problems and to use equal order interpolation of velocity and pressure. The thermo-structural model of the tunnel vault, that considers a multiphase porous material where pores are partly filled with liquid and partly by gas, is specially devised for the simulation of concrete at high temperatures and consists of balance equations for mass conservation of dry air, mass conservation of water species (both in the liquid and gaseous state), enthalpy conservation and linear momentum conservation taking phase changes into account. The developed algorithm is applied to the problem of the response of a tunnel to a fire. We consider the combustion process as a heat release which can vary usually from 1thinspaceMW for small car fires to 100MW for catastrophic fires. The released heat is transferred to the concrete walls of the tunnel which could cause extensive and heavy damage of the structure.
机译:在这项工作中,我们介绍了隧道火灾中的热流固耦合模拟算法开发的进展。耦合策略基于问题的Dirichlet / Neumann非重叠域分解,该分解是通过开发控制专用于流体力学和固体力学模拟的求解器的主代码来执行的。计算流体动力学公式由基于亚网格规模概念的低马赫数方程的稳定有限元近似组成,这使我们能够处理对流主导的问题,并使用等价的速度和压力插值。隧道穹顶的热结构模型考虑了多孔相材料,其中孔隙部分填充有液体,部分填充了气体,是专门为高温下的混凝土模拟而设计的,它由平衡方程组成,用于干燥空气的质量守恒。 ,考虑了相变,对水物种(液态和气态)的质量守恒,焓守恒和线性动量守恒。该算法适用于隧道对火灾的响应问题。我们认为燃烧过程是一种放热过程,通常在小型汽车火灾中为1thinspaceMW,在灾难性火灾中为100MW。释放的热量传递到隧道的混凝土墙,这可能会导致结构的严重破坏。

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