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首页> 外文期刊>Communications in numerical methods in engineering >Numerical simulation of a thermodynamically consistent four-species tumor growth model
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Numerical simulation of a thermodynamically consistent four-species tumor growth model

机译:热力学一致的四物种肿瘤生长模型的数值模拟

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摘要

In this paper, we develop a thermodynamically consistent four-species model of tumor growth on the basis of the continuum theory of mixtures. Unique to this model is the incorporation of nutrient within the mixture as opposed to being modeled with an auxiliary reaction-diffusion equation. The formulation involves systems of highly nonlinear partial differential equations of surface effects through diffuse-interface models. A mixed finite element spatial discretization is developed and implemented to provide numerical results demonstrating the range of solutions this model can produce. A time-stepping algorithm is then presented for this system, which is shown to be first order accurate and energy gradient stable. The results of" an array of numerical experiments are presented, which demonstrate a wide range of solutions produced by various choices of model parameters.
机译:在本文中,我们基于混合物的连续理论建立了一个热力学上一致的四物种肿瘤生长模型。该模型的独特之处在于将营养物掺入混合物中,而不是通过辅助反应扩散方程式进行建模。该公式涉及通过扩散界面模型的表面效应的高度非线性偏微分方程组。开发并实施了混合有限元空间离散化方法,以提供数值结果,证明该模型可以产生的解决方案范围。然后为该系统提出了一种时间步进算法,该算法被证明是一阶准确的并且能量梯度稳定的。提出了一系列数值实验的结果,这些结果证明了由各种模型参数选择产生的广泛解决方案。

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