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Study of a low-disturbance pressure-preserving corer and its coring performance in deep coal mining conditions
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作者 Wei Huang Jianan Li +3 位作者 Zhiqiang Liu Mingqing Yang Zhenxi You Heping Xie 《International Journal of Mining Science and Technology》 SCIE EI CAS CSCD 2023年第11期1397-1410,共14页
With the increasing depth of coal mining,the requirements for coring devices that maintain pressure are increasing.To adapt to the special environment in deep coal seams and improve the accuracy of testing gas content... With the increasing depth of coal mining,the requirements for coring devices that maintain pressure are increasing.To adapt to the special environment in deep coal seams and improve the accuracy of testing gas content,a low-disturbance pressure-preserving corer was developed.The measurement of gas content using this corer was analyzed.The coring test platform was used to complete a coring function test.A pressurized core with a diameter of 50 mm was obtained.The pressure was 0.15 MPa,which was equal to the pressure of the liquid column of the cored layer,indicating that the corer can be successfully used in a mud environment.Next,a pressure test of the corer was conducted.The results showed that under conditions of low pressure(8 MPa)and high pressure(25 MPa),the internal pressure of the corer remained stable for more than 1 h,indicating that the corer has good ability to maintain pressure.Therefore,the corer can be applied at deep coal mine sites.The results of this research can be used to promote the safe exploitation of deep coal mines and the exploitation of methane resources in coalbeds. 展开更多
关键词 Pressure-preserving corer Low-disturbance Coring performance Deep coal mining conditions
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A graphene-enhanced high-barrier and fast-curing film for deep in situ condition preserved coring in coal seams
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作者 Dongsheng Yang Zhiyu Zhao +4 位作者 Yifan Wu Liangyu Zhu Jingli Lu Tao Liu Heping Xie 《International Journal of Mining Science and Technology》 SCIE EI CAS CSCD 2023年第11期1365-1376,共12页
Scientific research on deep in situ resources is highly important to the theory and technology system construction for deep in-situ resource exploitation.To obtain high-condition preserved core samples,it is vital to ... Scientific research on deep in situ resources is highly important to the theory and technology system construction for deep in-situ resource exploitation.To obtain high-condition preserved core samples,it is vital to maintain the original material,humidity and luminous flux information inside the core.Therefore,this study proposes a research and development strategy for a high-toughness and highbarrier sealing film based on the molecular structure design and filler synergistic enhancement via a deep solid-state sealing film using in situ substance preservation(ISP),in situ moisture preservation(IMP)and in situ light preservation(ILP)coring principles.A graphene/epoxy composite sealing film with a high barrier,high strength and high toughness was developed.The oxygen permeability of the film was 0.23 cm^(3)/(m^(2)·d),the water vapor permeability was 1.26 g/(m^(2)·d),and the light transmittance was 0.The tensile strength reached 15.4 MPa,and the toughness was 5242.9 kJ/m^(3).The results from the film substance and moisture preservation performance verification experiments showed that the sealing film had an excellent sealing effect on small molecules,such as water,alkanes and even ions,which further verified that the sealing film greatly contributed to the maintenance and preservation of deep in-situ resource reserves and abundance. 展开更多
关键词 ISP-IMP-ILP-coring Graphene/epoxy resin composites Sealing film
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Development of an ultra-high-pressure rotary combined dynamic seal and experimental study on its sealing performance in deep energy mining conditions 被引量:3
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作者 Wei Huang Gan Feng +3 位作者 Hui-Lan He Jian-Zhong Chen Jiu-Quan Wang Zhao Zhao 《Petroleum Science》 SCIE CAS CSCD 2022年第3期1305-1321,共17页
With the continuous development of deep oil and gas,minerals,geothermal resources,and other resources,there are increasingly more stringent requirements for equipment.In particular,the ultra-highpressure dynamic seals... With the continuous development of deep oil and gas,minerals,geothermal resources,and other resources,there are increasingly more stringent requirements for equipment.In particular,the ultra-highpressure dynamic seals of deep mining device need to be developed.Therefore,considering the use of dynamic seals in unique deep mining environments,an ultra-high-pressure rotating combined dynamic seal was designed and developed and its sealing performance was experimentally measured and analyzed.The results show that the experimental device can operate stably under a pressure of up to150 MPa and a rotating speed of 76 r/min,and can also operate normally under a rotating speed of up to 140 r/min and a sealing pressure of 120 MPa.During the operation of the ultra-high-pressure rotating combined dynamic seal,the sealing ring does not show obvious damage,which vouches for its sealing performance.No leakage of flow and pressure was detected in the all seal structures within the sealing pressure range of 0-150 MPa.Therefore,the dynamic sealing performance of the device is intact under ultra-high-pressure conditions and can be applied in deep mining environments at a certain depth.The research and development of this device can aid future deep energy exploration and exploitation. 展开更多
关键词 Deep energy exploitation Ultra-high-pressure Rotating combination dynamic seal Development of test equipment
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Research and application of thermal insulation effect of natural gas hydrate freezing corer based on the wireline-coring principle 被引量:2
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作者 Yun-Qi Hu Jing Xie +7 位作者 Shou-Ning Xue Meng Xu Cheng-Hang Fu Hui-Lan He Zhi-Qiang Liu Shao-Ming Ma Si-Qing Sun Chuan-Liu Wang 《Petroleum Science》 SCIE CAS CSCD 2022年第3期1291-1304,共14页
Natural gas hydrate(NGH)holds great promise as a source of clean energy.It is critical for acquiring the largest possible in situ NGH core for NGH eigen features and resource assessment.However,the existing NGH coring... Natural gas hydrate(NGH)holds great promise as a source of clean energy.It is critical for acquiring the largest possible in situ NGH core for NGH eigen features and resource assessment.However,the existing NGH coring technology has limitations,such as temperature increments,limited coring diameters,low coring rates,and complex coring structures.Therefore,this study designs and proposes an NGH freezing coring(NGHFC)method and verifies the freezing and coring capacities of the NGHFC method in laboratories and experimental wells.Results suggest that NGHFC shows good freezing and heat-retention properties.A freezing core heat transfer model is developed.According to the actual air temperature and operating time,the optimum initial temperature of the cold source can be determined using this model.The average coring rate of NGHFC can reach 77.86%.The research results will provide a new idea of coring gas hydrates. 展开更多
关键词 Natural gas hydrate CORING Cold source freezing In situ temperature and pressure
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煤矿井下水平保压取心保压触发装置研制与试验研究
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作者 黄伟 陈领 +7 位作者 李佳南 凡东 杨明庆 刘贵康 许晴 马长亮 吕晓东 王鼎铭 《煤田地质与勘探》 EI CAS CSCD 北大核心 2023年第8期39-46,共8页
瓦斯含量是煤矿安全开采和煤层气资源开发利用的重要评价指标,而保压取心技术是提高煤层瓦斯含量精确测定的有效途径。针对煤矿水平保压取心特殊工况,基于煤矿原位保压保瓦斯取心原理与技术,为提高保压煤样的采取率,研制了保压触发装置... 瓦斯含量是煤矿安全开采和煤层气资源开发利用的重要评价指标,而保压取心技术是提高煤层瓦斯含量精确测定的有效途径。针对煤矿水平保压取心特殊工况,基于煤矿原位保压保瓦斯取心原理与技术,为提高保压煤样的采取率,研制了保压触发装置,系统设计了装置的密封保压单元、液压驱动模块和捞矛头与水平打捞器连接-脱卡机构等关键部件。搭建了保压触发装置工作性能地面试验系统,对装置性能进行试验研究。结果表明:在保压控制器阀盖5个典型的翻转方向工况下,保压触发装置的各功能模块均稳定运行,保压控制器均完成了翻转闭合;同时,钢丝绳顺利从取心钻杆内取出,有效防止取心器从孔底提至孔口过程中钢丝绳缠绕,避免引起设备故障。采用电动试压泵对已完成工作性能试验的取心器保压舱进行打压测试,结果表明:在最高压力为4.1 MPa条件下,压力表读数稳定,取心器保压舱内带压流体不发生泄漏,表明保压触发装置可触发取心器的密封保压功能。最后,在煤矿井下实际条件下对装置性能进行试验,结果表明:保压触发装置可在煤层实际工况下稳定实现取心器的密封保压功能,煤样采取率高达90%。保压触发装置的研发可促进煤矿水平保压取心技术的发展,对煤层瓦斯含量的精准测定具有重要意义。 展开更多
关键词 水平孔 保压取心 保压触发装置 试验研究 煤矿井下
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