基于线性脉冲变压器的脉冲发生器破岩效率研究

D. Molchanov, I. Lavrinovich
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引用次数: 2

摘要

电脉冲钻井的效率得到了世界上许多研究人员的认可。近井面高压发生器电脉冲钻浅井(几十米),比能耗远低于常规旋转钻井。为了在深井(几百米到几公里)进行高效的电脉冲钻井,需要一种紧凑型的井下发电机,我们认为,这种高压发电机可以建在线路脉冲变压器(LPT)周围。本文介绍了一种基于lpt的系统的实验室测试结果,该系统用于钻探物理特征与深埋岩石相似的预浸岩石样品。结果表明,与基于Marx生成器的系统相比,LPT系统的效率并不低,而其整体尺寸、重量和设计简单性是无与伦比的。对如何通过优化LPT系统的参数来提高其钻井效率提出了建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Efficiency of Rock Destruction by a Pulse Generator Based on a Linear Pulse Transformer
The efficiency of electropulse drilling is recognized by many researchers worldwide. For electropulse drilling of shallow wells (tens of meters) with a high-voltage generator on the near-well surface, the specific energy consumption is much lower than that for conventional rotary drilling. For efficient electropulse drilling of deep wells (hundred meters to several kilometers), a compact downhole generator is needed, and this type of high-voltage generators can be built, in our opinion, around a line pulse transformer (LPT). The paper presents the results of laboratory tests of an LPT-based system for drilling presoaked rock samples similar in physical characteristics to rocks occurring at great depths. The results demonstrate that compared to systems based on a Marx generator, the LPT system is no less efficient while its overall dimensions, weight, and design simplicity are matchless. Recommendations are also given on how to increase the drilling efficiency of the LPT system by optimizing its parameters.
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