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An implicit time marching Galerkin method for the simulation of icing phenomena with a triple layer model

机译:用三层模型模拟结冰现象的隐式时间行进Galerkin方法

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In the context of more electrical aircraft and reduction of fuel consumption, aircraft manufacturers are moving towards more complex and transient ice protection systems. The operating of these systems involves several unsteady heat and mass transfer phenomena. Modelling and numerical simulation play an important role in the investigation of these unsteady phenomena. In this paper, a model for unsteady ice build-up and melting is presented. The model is based on a triple layer assumption. In addition, a tailored numerical methodology for solving the governing partial differential equations is also described. It is based on a Galerkin finite element method and a Gauss-Seidel like implicit time marching scheme. The global method is validated and its capabilities are demonstrated on several cases.
机译:在更多的电动飞机和减少燃料消耗的背景下,飞机制造商正在朝着更复杂和更短暂的防冰系统发展。这些系统的运行涉及几种不稳定的传热和传质现象。建模和数值模拟在研究这些非稳态现象中起着重要作用。在本文中,提出了一个非稳态冰的形成和融化的模型。该模型基于三层假设。另外,还描述了用于求解控制偏微分方程的量身定制的数值方法。它基于Galerkin有限元方法和类似隐含时间行进方案的Gauss-Seidel。验证了全局方法,并在几种情况下证明了其功能。

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