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首页> 外文期刊>Bulletin of the Polish Academy of Sciences. Technical Sciences >Extremum principles for biological continuous bodies undergoing volumetric and surface growth
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Extremum principles for biological continuous bodies undergoing volumetric and surface growth

机译:进行体积和表面生长的生物连续体的极值原理

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The volumetric and surface growth of continuum solid bodies is considered, in the framework of the thermodynamics of open systems exchanging mass, work and chemical species (nutrients) with their environment. More specifically, we address the issue of setting up extremum principles for such growing bodies. A general three-field variational principle is set up, based on the so-called zero potential, which is a byproduct of the grand potential. The stationnarity conditions of those potentials deliver balance laws for generalized volumetric and surface Eshelby tensors, leading further to the identification of the material forces for growth.
机译:在以质量,功和化学物质(营养物)与其环境交换的开放系统的热力学框架中,考虑了连续体的体积和表面生长。更具体地说,我们解决为此类成长机构建立极端原则的问题。基于所谓的零电势建立了一般的三场变分原理,零电势是大电势的副产品。这些电位的平稳性条件为广义的体积和表面Eshelby张量传递了平衡定律,从而进一步确定了增长的物质力量。

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