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Sealing properties and structure optimization of packer rubber under high pressure and high temperature

机译:高压高温封隔器橡胶的密封性能及结构优化

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During hydraulic fracturing operations of low-permeability reservoirs, packers are the key component to ensure the success of multistage fracturing. Packers enable sections of the wellbore to be sealed off and separately fractured by hydraulic pressure, one at a time, while the remainder of the wellbore is not affected. However, reliable sealing properties of the packer rubber are required to meet the high-pressure and high-temperature (HPHT) conditions of reservoirs (such as 70?MPa and 170?°C). In this study, the structures of the packer rubber with two different materials are optimized numerically by ABAQUS and validated by experiments. The optimization process starts from the packer rubber with a conventional structure, and then, the weakest spots are identified by ABAQUS and improved by slightly varying its structure. This process is iterative, and the final optimized structure of a single rubber barrel with expanding back-up rings is achieved. For the structure of three rubber barrels with metallic protective covers, both HNBR and AFLAS fail under HPHT conditions. For the final optimized structure, the packer rubber made of AFLAS can work better under HPHT than that made of HNBR which ruptures after setting. The results show that the optimized structure of a single rubber barrel with expanding back-up rings and the material AFLAS are a good combination for the packer rubber playing an excellent sealing performance in multistage fracturing in horizontal wells.
机译:在低渗透油藏的水力压裂作业中,封隔器是确保多级压裂成功的关键。封隔器可将井眼的各个部分密封起来,并一次通过液压分别破裂,而其余的井眼则不受影响。但是,为了满足储层的高压和高温(HPHT)条件(例如70?MPa和170?C),需要密封橡胶的可靠密封性能。在这项研究中,两种不同材料的封隔器橡胶的结构通过ABAQUS进行了数值优化,并通过实验进行了验证。优化过程从具有常规结构的封隔器橡胶开始,然后,通过ABAQUS识别最弱的斑点,并通过稍微改变其结构来改善最弱的斑点。此过程是反复进行的,并获得了带有扩展支撑环的单个橡胶桶的最终优化结构。对于具有金属保护盖的三个橡胶桶的结构,HNBR和AFLAS在HPHT条件下均会失效。对于最终优化的结构,由AFLAS制成的封隔器橡胶在HPHT下的工作性能要优于由HNBR制成的封隔器橡胶,后者在凝固后会破裂。结果表明,带有扩展支撑环的单个橡胶桶的优化结构和AFLAS材料是封隔器橡胶的良好组合,在水平井的多级压裂中发挥了出色的密封性能。

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