Abstract

Based on Biot theory, the basic equations for large-scale slab are presented and the transient thermal or thermo-mechanical loading are considered, four types of material surface of large-scale slab forced by transient thermal or thermo-mechanical loading are discussed. The characteristics and regularity of heat quality transmission in large-scale slab were investigated. The displacement fields and pore pressure is obtained by using the formulation of the corresponding transient thermal loading. There is significance for the research on thermo quality transmission problems of large-scale slab with permeates flow and creep. Biot’s work was nonlinear and 3-demensional, it marked that the general idea of fluid permeates in large-scale slab had been set up. A series of achievement has been given about the question for study or discussion of fluid permeation, for instance, in geomechanics and biomechanics and so on. But the results for the thermal quality transmission of large-scale slab with permeate flow and creep are less presented in the literature. Wang has investigated its theory and application considering thermal elasticity and thermal loading, some important conclusion has been presented. Based on this method, the displacement fields and pore pressure are obtained in this paper.

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