【摘 要】
:
A geothermal demonstration exploitation area will be established in the Enhanced Geothermal System of the Qiabuqia field,Gonghe Basin,Qinghai-Xizang Plateau in China.Selection of operational parameters for geothermal field extraction is thus of great sign
【机 构】
:
State Key Laboratory of Petroleum Resources and Prospecting,China University of Petroleum,Beijing 10
论文部分内容阅读
A geothermal demonstration exploitation area will be established in the Enhanced Geothermal System of the Qiabuqia field,Gonghe Basin,Qinghai-Xizang Plateau in China.Selection of operational parameters for geothermal field extraction is thus of great significance to realize the best production performance.A novel integrated method of finite element and multi-objective optimization has been employed to obtain the optimal scheme for thermal extraction from the Gonghe Basin.A thermal-hydraulic-mechanical coupling model (THM) is established to analyze the thermal performance.From this it has been found that there exists a contraction among different heat extraction indexes.Parametric study indicates that injection mass rate(Qin) is the most sensitive parameter to the heat extraction,followed by well spacing (WS) and injection temperature (Tin).The least sensitive parameter is production pressure (pout).The optimal combination of operational parameters acquired is such that(Tin,pout,Qin,WS) equals (72.72℃,30.56 MPa,18.32 kg/s,327.82 m).Results indicate that the maximum electrical power is 1.41 MW for the optimal case over 20 years.The thermal break has been relieved and the pressure difference reduced by 8 MPa compared with the base case.The optimal case would extract 50% more energy than that of a previous case and the outcome will provide a remarkable reference for the construction of Gonghe project.
其他文献
It is more difficult for a hot dry rock to form a fracture network system than shale due to its special lithology,physical and mechanical properties under high temperature.The essential characteristics,rock mechanics and in-situ stress characteristics of
Hydraulic fracture (HF) propagation behavior is significant when building enhanced geothermal systems (EGS).HF geometry is closely related to the structural planes (SPs) in hot dry rock (HDR),such as natural fractures (NFs),quartz veins (QVs) and litholog
Hot dry rock is becoming an important clean energy source.Enhanced geothermal systems (EGS) hold great promise for the potential to make a contribution to the energy inventory.However,one controversial issue associated with EGS is the impact of induced se
It is common sense that a deeper well implies higher temperature in the exploration of deep geothermal resources,especially with hot dry rock (HDR) geothermal resources,which are generally exploited in terms of enhanced geothermal systems (EGS).However,te
China has been the leading country worldwide in direct geothermal utilization for a rather long time,which has contributed significantly to reducing carbon emissions.But the installed capacity of geothermal power generation in China is very small,and ther
Geothermal resource is indispensable as a clean,renewable,stable and cheap resource.Nowadays in China,the Gonghe Basin,located in northeastern Qinghai Province,has been thought to be a promising geothermal area.To explore geothermal energy potential in an