Application of an Innovate Energy Balance to Investigate Viscoelastic Problems

S. Shahsavari, M. Moradi
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引用次数: 3

Abstract

Modeling and investigating of energy distribution especially the wasted one is very important in viscoelastic problems. In this article, an applied energy model based on separation of energy components of the system is extracted and expanded to apply in linear viscoelastic problems, although this method is applicable in nonlinear problems as well. It is assumed that the whole energy of the system can be divided into two parts: Residual and noninertial energies. The non-inertial energy is the sum of the energies that do not depend on the inertia of the system, while residual energy is the remaining of total energy. When an amount of energy is applied to the system, by determining the non-inertial energy from a novel energy conservation equation, the residual energy can be calculated. Some basic viscoelastic examples are investigated and obtained results will be compared with the expected ones. Keywords— Energy Balance; Residual Energy; Non-inertial energy; Viscoelasticity
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创新能量平衡在粘弹性问题研究中的应用
在粘弹性问题中,能量分布特别是浪费能量的建模和研究是非常重要的。本文提取了一种基于系统能量分量分离的应用能量模型,并将其扩展到线性粘弹性问题中,尽管该方法也适用于非线性问题。假设系统的全部能量可分为两部分:剩余能量和非惯性能量。非惯性能量是不依赖于系统惯性的能量的总和,而剩余能量是总能量的剩余部分。当对系统施加一定的能量时,通过从一个新的能量守恒方程中确定非惯性能量,可以计算出剩余能量。对一些基本粘弹性算例进行了研究,所得结果将与预期结果进行比较。关键词:能量平衡;剩余能量;惯性能量;粘弹性
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