Optimal discretization time and mesh size in three-dimensional temperature field simulation in two Mexican geothermal fields

Geothermics ◽  
2014 ◽  
Vol 51 ◽  
pp. 91-102 ◽  
Author(s):  
Surendra P. Verma ◽  
Efraín Gómez-Arias
2010 ◽  
Vol 31 (4) ◽  
pp. 701-715
Author(s):  
Yanwu Wang ◽  
Chunli Fan ◽  
Li Yang ◽  
Fengrui Sun

2021 ◽  
Vol 2021 ◽  
pp. 1-11
Author(s):  
Huanhuan Li ◽  
Shaojun Fu ◽  
Gang Li ◽  
Guofei Hu

In order to make clear the cracking reasons in arch dam of Xiaowan Hydropower Station during operation period, the approach to combine ANSYS with finite element program COCE-3D is adopted. Firstly, the influence by element type and mesh size for the temperature field simulation result is analyzed. Subsequently, the three typical dam segments cut from Xiaowan arch dam are selected and the relevant finite element model is established; the effect of the measured diurnal air temperature on temperature field and temperature stress of arch dam is analyzed thoroughly. The results indicate that the temperature gradient in mass concrete becomes lower, whereas the affecting depth becomes deeper when the mesh size is too large. Therefore, it is advisable to use smaller size mesh to study the influence of the measured diurnal air temperature on the surface temperature distribution in mass concrete. The temperature of downstream zone in arch dam is significantly affected by air temperature; the changing laws of temperature field and temperature stress with the air temperature are basically consistent, which is sensitive to lower temperature. When the temperature sharply decreased, the temperature stress in the downstream zone is mainly in tensile stress state. The calculated results are basically consistent with the measured results, and the temperature stress induced by the day-night temperature difference is the important reason for the horizontal cracks on the downstream surface. The submodel analysis method is an important alternative approach to study the changing laws of temperature field of arch dam. The research results not only provide an evidence for temperature control and crack prevention of Xiaowan arch dam but also provide a reference for temperature field simulation of similar projects.


2011 ◽  
Vol 54 (7) ◽  
pp. 833-843 ◽  
Author(s):  
Surendra P. Verma ◽  
Usy C. Arredondo-Parra ◽  
Jorge Andaverde ◽  
Efraín Gómez-Arias ◽  
Fernando J. Guerrero-Martínez

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