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生产井井间距离对增强型地热系统影响分析
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作者 唐巨鹏 邱于曼 《计算力学学报》 CAS CSCD 北大核心 2023年第1期126-132,共7页
为揭示生产井井间距离对增强型地热系统(EGS)的影响,以中国青海共和盆地增强型地热系统为研究对象,采用数值模拟方法,建立了考虑生产井井间距离不同的三维热-固-流耦合热采模型。分析得到生产井井间距离为600 m,700 m,800 m,900 m,1000 ... 为揭示生产井井间距离对增强型地热系统(EGS)的影响,以中国青海共和盆地增强型地热系统为研究对象,采用数值模拟方法,建立了考虑生产井井间距离不同的三维热-固-流耦合热采模型。分析得到生产井井间距离为600 m,700 m,800 m,900 m,1000 m对EGS温度场、产出流体温度、储层寿命、总产热量、最大主应力以及最大主应变影响规律。研究结果表明,随着热开采进行,储层裂隙周围岩体温度下降,产出温度随开采年限增加而降低;从产出温度、储层寿命和总产热量三方面考虑,最优生产井井间距离为800 m;生产井井间距离对第一主应力及第一主应变影响显著,应结合实际情况选择最优生产井井间距离。 展开更多
关键词 EGS 生产井井间距离 产出流体温度 储层寿命 总产热量 第一主应力 第一主应变
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Fatigue Life Estimation of an Elastomeric Pad by ε-N Curve and FEA 被引量:1
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作者 Baban Suryatal Haribhau Phakatkar +1 位作者 Kasilingam Rajkumar Ponniah Thavamani 《Journal of Surface Engineered Materials and Advanced Technology》 2015年第2期85-92,共8页
Failure analysis and fatigue life prediction are very important in the design procedure to assure the safety and reliability of rubber components. The fatigue life of a railway elastomeric pad is predicted by combinin... Failure analysis and fatigue life prediction are very important in the design procedure to assure the safety and reliability of rubber components. The fatigue life of a railway elastomeric pad is predicted by combining the test of material properties and finite element analysis (FEA). The specially developed chloroprene rubber material’s fatigue life equation is acquired based on uniaxial tensile test and fatigue life tests performed on the dumbbell specimens of the chloroprene rubber. The same chloroprene rubber was developed at Indian Rubber Manufacturer’s Research Association, Thane. The strain distribution contours and the maximum total principal strains of the elastomeric pad at different compressive loads are obtained using finite element analysis method. The software used for the FEA was ANSYS. The three parameter nonlinear hyperelastic Mooney-Rivlin Model and plane 182 elements were used for finite element analysis. The critical region cracks prone to arise are obtained and analysed. Then the maximum first principal elastic strain was used as the fatigue damage parameter, which is substituted in the chloroprene rubber’s fatigue life equation, to predict the fatigue life of an elastomeric pad in the number of cycles at different compressive loads. The results were compared with the technical requirements given by Indian Railway’s Research Designs and Standards Organization. These requirements were achieved up to certain extents. The results were also compared with the data available in the literature and a similarity was observed between the results acquired and literature data. In short, the proposed fatigue life prediction method can shorten the product design cycle, decrease the design and product cost remarkably and improve the quality of an elastomeric pad. 展开更多
关键词 ELASTOMERIC PAD FATIGUE LIFE FINITE Element Analysis (FEA) FATIGUE LIFE Equation total principal strain CHLOROPRENE Rubber
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