基于线路脉冲变压器的电脉冲钻井井下发生器

D. Molchanov, V. Vazhov, I. Lavrinovich, V. Lavrinovich, N. Ratakhin
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引用次数: 3

摘要

日益增长的能源需求需要新能源。现代采油工业以大深度采油为目标[1]。一些欧洲国家,如瑞士、德国,开发了从地球的自然热能中收集地热能的技术[2]。要实现这些目标,需要新的科学方法来进行深钻井和超深钻井。超深钻孔最有效的方法之一是电脉冲岩石崩解[3],这是基于在俄罗斯托木斯克发现的放电通道穿透固体的效果[4-6]。显然,高压脉冲发生器在地面的位置降低了能量传递到井底的效率,从而降低了钻井效率。为了提高效率,发电机应安装在钻头附近,即在井下。在此,我们考虑了设计和使用基于线脉冲变压器(LPT发生器)的井下发生器用于岩石电脉冲钻孔的可能性。对不同岩石样品的初步实验室测试表明,与传统技术中使用的Marx发生器相比,LPT发生器的比输出提高了30%。LPT发电机的设计相当简单,允许较少数量的开关,这增加了它的可靠性和使用寿命。也可以用脉冲电流发生器(LPT- pcg电路)实现LPT电路,与马克思发电机相比,进一步提高放电能量和发电机效率。
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Downhole generator based on a line pulse transformer for electro pulse drilling
Ever-increasing energy demands require new energy sources. Modern oil extraction industry is targeted to extracting oil products at large depths [1]. Some European countries, for example, Switzerland, Germany, develop technologies for geothermal energy harvesting from the natural heat of the Earth [2]. Accomplishing these goals needs new scientific approach to deep and ultra-deep drilling. One of the most efficient methods of ultra-deep boring is electro-pulse disintegration of rocks [3], which is based on the effect of discharge channel penetration into a solid discovered in Tomsk, Russia [4-6]. Clearly, the location of a high-voltage pulse generator on the surface decreases the efficiency of energy transfer to a well bottom and hence the drilling efficiency. For enhancing the efficiency, the generator should be located in the immediate proximity to the drill head, i.e., it should be downhole. Here we consider the possibility of designing and using a downhole generator based on a line pulse transformer (LPT generator) for electro-pulse-boring of rocks. Preliminary laboratory tests on different rock samples demonstrate that the LPT generator provides a 30 % higher specific output compared to Marx generators conventionally used in the technology. The LPT generator design is rather simple and admits a smaller number of switches, which increases its reliability and lifetime. It is also possible to realize an LPT circuit with a pulse current generator (LPT-PCG circuit) to further enhance the discharge energy and the generator efficiency compared to Marx generators.
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