A semi-analytical method and its application for calculating the thermal stress and displacement of sparsely fractured rocks with water flow and heat transfer稀疏裂隙岩体水流传热过程中热应力及位移的半解析计算方法和应用

被引:0
作者
Yong Zhang
Yan-yong Xiang
机构
[1] Beijing Jiaotong University,School of Civil Engineering
[2] Shenhua Group Co. Ltd.,Science and Technology Development Division
来源
Journal of Zhejiang University-SCIENCE A | 2015年 / 16卷
关键词
Sparsely fractured rock; Water flow; Heat transfer; Thermo-elastic displacement potential; Thermal stress; TU452; 稀疏裂隙岩体; 裂隙水流; 热传导; 热弹性位移势; 热应力;
D O I
暂无
中图分类号
学科分类号
摘要
Using Goodier’s thermo-elastic displacement potential and Laplace transform, a semi-analytical method is developed for calculating the displacement and stress induced by heat transfer in sparsely fractured granitic rocks with saturated water flow and distributed heat sources. An integral equation of the thermo-elastic displacement potential is formulated in the Laplace-transformed domain. The fractures are discretized into rectangular elements, and the elemental integrals that involve singularities are calculated analytically. The numerical solutions of the potential are calculated using numerical Laplace inversion, and the temperature-gradient-induced displacements and stresses are calculated using central differences. The method is employed to examine the characteristics of the temperature-gradient-induced displacement and stress for a hypothetical problem that is intended to mimic the near-field environment of deep geological repositories of high-level radioactive wastes. Among other things, the results reveal the following: (1) In early time of operation of the repository, the region of rock under thermal expansion and compressive is limited; (2) As the intensity of the heat source gets smaller with time, only a small portion of the rock expands whereas the remaining portion contracts; (3) Downstream peak temperatures may be higher due to the supply of thermal energy by the water-flow-facilitated heat transfer, and patterns of influences of the water velocities on the thermal stress and displacement are similar; (4) Sufficiently close heat sources would cause superposition of the heating effects and make the near-field temperature increase significantly.
引用
收藏
页码:922 / 934
页数:12
相关论文
共 21 条
  • [1] Chijimatsu M.(2005)Numerical study of the THM effects on the near-field safety of a hypothetical nuclear waste repository—BMT1 of the DECOVALEX III project. Part 1: conceptualization and characterization of the problems and summary of results International Journal of Rock Mechanics and Mining Science 42 720-730
  • [2] Nguyen T.S.(2006)Porothermoelastic analysis of the response of a stationary crack using the displacement discontinuity method Journal of Engineering Mechanics 132 26-33
  • [3] Jing L.(1997)Coupled HTM modelling of cold water injection in fractured hydrocarbon reservoirs International Journal of Rock Mechanics and Mining Sciences 34 111-113
  • [4] Ghassemi A.(1996)Modelling hydro-thermomechanical behaviour of engineered clay—barriers validation phase Engineering Geology 41 301-318
  • [5] Zhang Q.(2001)Coupled thermo-hydro-mechanical analysis of a heater test in fractured rock and bentonite at Kamaishi Mine—comparison of field results to predictions of four finite element codes International Journal of Rock Mechanics and Mining Sciences 38 129-142
  • [6] Gutierrez M.(1991)Prediction of oil sand failure due to steam-induced stresses Journal of Canadian Petroleum Technology 30 87-96
  • [7] Makurat A.(1993)Reservoir simulation integrated with geomechanics Journal of Canadian Petroleum Technology 32 28-37
  • [8] Onofrei C.(2014)A semi-analytical modeling approach for three-dimensional heat transfer in sparsely fractured rocks with water flow and distributed heat source International Journal for Numerical and Analytical Methods in Geomechanics 38 1149-1171
  • [9] Gray M.(2009)A three-dimensional integral equation model for calculating poro-and thermoelastic stresses induced by cold water injection into a geothermal reservoir International Journal for Numerical and Analytical Methods in Geomechanics 33 1613-1640
  • [10] Rutqvist J.(undefined)undefined undefined undefined undefined-undefined