Title :
Notice of Retraction
Fluid-solid coupling numerical simulation of temperature field of roadway surrounding rock in water-bearing formation
Author :
Shuguang Zhang ; Ming Lu
Author_Institution :
Inst. of Civil & Traffic Eng., Liaoning Tech. Univ., Fuxin, China
Abstract :
Notice of Retraction
After careful and considered review of the content of this paper by a duly constituted expert committee, this paper has been found to be in violation of IEEE´s Publication Principles.
We hereby retract the content of this paper. Reasonable effort should be made to remove all past references to this paper.
The presenting author of this paper has the option to appeal this decision by contacting TPII@ieee.org.
By analyzing hydrogeological conditions of panxi coal, the coupling mathematical model of heat-transfer is developed in surrounding rock.Temperature field and seepage field distribution of fracture rock is described by using heat-transfer and seepage differential equations. Combined with boundary condition and parameters, the numerical solution is obtained by using numerical software. The results of numerical simulation show that the temperature of surrounding rock change under the influence of the seepage. Because of the temperature difference between the groundwater and the surrounding rock, heat axchange will occur on the coupling section. Eventually the temperature of water is similar to the surrounding rock and form the balance area of heat exchange. This indicated that heat transfer accompany the process of seeapge. At the same time, the balance area of heat exchange will move following leakage, and along with the seepage speed increasing, the balance area of the scope will enlarge. With the existence of the blance area, it becomes the watershed of the temperature vector change.
Keywords :
coal; differential equations; fracture; heat transfer; mining industry; rocks; Panxi coal; boundary condition; coupling mathematical model; fluid-solid coupling numerical simulation; fracture rock; heat exchange; heat-transfer; hydrogeological condition; numerical software; roadway surrounding rock; seepage differential equation; seepage field distribution; temperature field; water-bearing formation; Atmospheric modeling; Geology; Heating; Numerical models; fluid-solid coupling; mathematical model; numerical simulation; surrounding rock; temperature field;
Conference_Titel :
Computer Science and Information Technology (ICCSIT), 2010 3rd IEEE International Conference on
Conference_Location :
Chengdu
Print_ISBN :
978-1-4244-5537-9
DOI :
10.1109/ICCSIT.2010.5565109