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DEVELOPMENT OF HIGH EROSIVITY CAVITATING AND ACOUSTICALLY ENHANCED WATER JETS FOR WELL SCALE REMOVAL

机译:高折叠空气和声学上增强水喷射的开发,以进行井数去除

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The walls of geothermal wells often experience rapid build up of scale deposits due to the high dissolved solids content of geothermal fluids. As the liquid is brought up from deep wells, its pressure drops, and the water flashes to steam resulting in precipitation of dissolved minerals. Existing means of addressing this problem such as chemical inhibitors, removal with conventional water jet blasting, drilling with a workover bit, or acids are costly and not always effective, particularly with the harder scales such as silica. Our ongoing effort seeks to develop cavitating and acoustically enhanced water jets for geothermal well scale removal. These technologies have been proven to enhance the erosive power of liquid jets by several fold in various cutting, cleaning, and drilling applications particularly for hard materials and thus promise to substantially enhance the performance of down-hole cleaning tools, particularly for the removal of hard scale. Initial results from laboratory experiments on cutting of both actual and simulated are presented. Experiments are reported under simulated down hole conditions over a range of ambient pressures and standoffs. Scale removal and cleaning rates are compared with those obtained from conventional water jet nozzles, and the improvements presented.
机译:由于地热流体的高溶解固体含量,地热井的墙体经常经历快速积聚的尺度沉积物。随着液体从深井带来,其压降,水滴,水闪烁到蒸汽导致溶解矿物质的沉淀。现有手段解决该问题,例如化学抑制剂,用常规水喷射爆破去除,用工件钻头钻孔,或酸性昂贵,并且并不总是有效,特别是与二氧化硅等较硬的刻度。我们正在进行的努力寻求开发有用于地热井粗糙度拆除的空化和声学增强的水喷气机。已经证明,这些技术在各种切割,清洁和钻孔应用中通过多种折叠提高了液体喷射的腐蚀性,特别是对于硬质材料,因此承诺基本上提高了井下清洁工具的性能,特别是为了去除硬质规模。提出了实际和模拟切割实验室实验的初始结果。在一系列环境压力和支架上的模拟下孔条件下报告了实验。将缩放除去和清洁速率与传统水喷射喷嘴获得的那些进行比较,并且提出的改进。

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