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Further Development of the Three-Dimensional Hoek-Brown Yield Criterion

机译:三维Hoek-Brown屈服准则的进一步发展

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The original Hoek-Brown failure criterion was first introduced in 1980. Since then, it has been further developed and used in different rock mechanics applications. The main advantage of the Hoek-Brown criterion is that its input data are determined from the uniaxial compressive strength, mineralogy and structural properties of the rock. However, its application in the petroleum industry has been limited, partly because it does not take account of the intermediate principal stress in a three-dimensional stress state.In 2005, Priest introduced comprehensive and simplified versions of a new three-dimensional Hoek-Brown yield criterion, which was developed by combining the two-dimensional Hoek-Brown and three-dimensional Drucker-Prager criteria. Until now, direct analytical solutions have not been developed to solve the governing equations and numerical solution strategies have been applied. This paper presents and validates an explicit solution for the comprehensive three-dimensional Hoek-Brown yield criterion, which can be combined with numerical stress modelling codes.
机译:最初的Hoek-Brown破坏准则是在1980年引入的。从那时起,它就得到了进一步的发展,并用于不同的岩石力学应用中。 Hoek-Brown准则的主要优点是其输入数据是根据岩石的单轴抗压强度,矿物学和结构特性确定的。但是,它在石油工业中的应用受到限制,部分原因是它没有考虑三维应力状态下的中间主应力.2005年,Priest引入了新的三维Hoek-Brown的全面和简化版本产量准则,该准则是通过将二维Hoek-Brown和三维Drucker-Prager准则相结合而开发的。到现在为止,还没有开发出直接的解析解来求解控制方程,并且已经应用​​了数值解策略。本文提出并验证了综合的三维Hoek-Brown屈服准则的显式解决方案,该准则可以与数值应力建模代码结合使用。

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