会议论文详细信息
Energy Management of Municipal Transportation Facilities and Transport - EMMFT 2017
Modeling of composite coupling technology for oil-gas pipeline section resource-saving repair
Donkova, Irina^1 ; Yakubovskiy, Yuriy^2 ; Kruglov, Mikhail^2
Tyumen State University, Volodarskogo str., 6, Tyumen
625003, Russia^1
Industrial University of Tyumen, Volodarskogo str., 38, Tyumen
625000, Russia^2
关键词: Composite cylindrical shell;    Coupling technology;    Deformation theory;    Integral characteristics;    Modeling and calculations;    Stress strain state;    Structure deformation;    System of differential equations;   
Others  :  https://iopscience.iop.org/article/10.1088/1755-1315/90/1/012093/pdf
DOI  :  10.1088/1755-1315/90/1/012093
来源: IOP
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【 摘 要 】

The article presents a variant of modeling and calculation of a main pipeline repair section with a composite coupling installation. This section is presented in a shape of a composite cylindrical shell. The aim of this work is mathematical modeling and study of main pipeline reconstruction section stress-strain state (SSS). There has been given a description of a structure deformation mathematical model. Based on physical relations of elasticity, integral characteristics of rigidity for each layer of a two-layer pipe section have been obtained. With the help of the systems of forces and moments which affect the layers differential equations for the first and second layer (pipeline and coupling) have been obtained. The study of the SSS has been conducted using the statements and hypotheses of the composite structures deformation theory with consideration of interlayer joint stresses. The relations to describe the work of the joint have been stated. Boundary conditions for each layer have been formulated. To describe the deformation of the composite coupling with consideration of the composite cylindrical shells theory a mathematical model in the form of a system of differential equations in displacements and boundary conditions has been obtained. Calculation of a two-layer cylindrical shell under the action of an axisymmetric load has been accomplished.

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