An open-end high-power microwave-induced fracturing system for hard rock

IF 9.4 1区 工程技术 Q1 ENGINEERING, GEOLOGICAL Journal of Rock Mechanics and Geotechnical Engineering Pub Date : 2023-12-01 DOI:10.1016/j.jrmge.2023.09.002
Xia-Ting Feng, Jiuyu Zhang, Feng Lin, Chengxiang Yang, Shiping Li, Tianyang Tong, Xiangxin Su
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引用次数: 2

Abstract

Microwave pre-treatment is considered as a promising technique for alleviating cutter wear. This paper introduces a high-power microwave-induced fracturing system for hard rock. The test system consists of a high-power microwave subsystem (100 kW), a true triaxial testing machine, a dynamic monitoring subsystem, and an electromagnetic shielding subsystem. It can realize rapid microwave-induced fracturing, intelligent tuning of impedance, dynamic feedback under strong microwave fields, and active control of microwave parameters by addressing the following issues: the instability and insecurity of the system, the discharge breakdown between coaxial lines during high-power microwave output, and a lack of feedback of rock-microwave response. In this study, microwave-induced surface and borehole fracturing tests under true triaxial stress were carried out. Experimental comparisons imply that high-power microwave irradiation can reduce the fracturing time of hard rock and that the fracture range (160 mm) of a 915-MHz microwave source is about three times that of 2.45 GHz. After microwave-induced borehole fracturing, many tensile cracks occur on the rock surface and in the borehole: the maximum reduction of the P-wave velocity is 12.8%. The test results show that a high-power microwave source of 915 MHz is more conducive to assisting mechanical rock breaking and destressing. The system can promote the development of microwave-assisted rock breaking equipment.

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一种开放式高功率微波致硬岩压裂系统
微波预处理被认为是一种很有前途的减轻刀具磨损的技术。介绍了一种大功率微波致硬岩压裂系统。该测试系统由大功率微波分系统(100kw)、真三轴试验机、动态监测分系统和电磁屏蔽分系统组成。通过解决系统的不稳定性和不安全性、大功率微波输出时同轴线间放电击穿、岩石微波响应缺乏反馈等问题,实现微波致裂快速、阻抗智能调谐、强微波场下动态反馈、微波参数主动控制。在本研究中,进行了真三轴应力下的微波诱导地面和井内压裂试验。实验对比表明,高功率微波辐照可缩短硬岩的破裂时间,915-MHz微波源的破裂范围(160 mm)约为2.45 GHz的3倍。微波致井内压裂后,岩石表面和井内出现大量张性裂缝,纵波速度最大降低12.8%。试验结果表明,915 MHz的高功率微波源更有利于辅助机械破岩卸压。该系统可促进微波辅助破岩设备的发展。
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来源期刊
Journal of Rock Mechanics and Geotechnical Engineering
Journal of Rock Mechanics and Geotechnical Engineering Earth and Planetary Sciences-Geotechnical Engineering and Engineering Geology
CiteScore
11.60
自引率
6.80%
发文量
227
审稿时长
48 days
期刊介绍: The Journal of Rock Mechanics and Geotechnical Engineering (JRMGE), overseen by the Institute of Rock and Soil Mechanics, Chinese Academy of Sciences, is dedicated to the latest advancements in rock mechanics and geotechnical engineering. It serves as a platform for global scholars to stay updated on developments in various related fields including soil mechanics, foundation engineering, civil engineering, mining engineering, hydraulic engineering, petroleum engineering, and engineering geology. With a focus on fostering international academic exchange, JRMGE acts as a conduit between theoretical advancements and practical applications. Topics covered include new theories, technologies, methods, experiences, in-situ and laboratory tests, developments, case studies, and timely reviews within the realm of rock mechanics and geotechnical engineering.
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