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液态CO相变爆破对干热岩储层近井改造的机理及影响因素分析——以马头营凸起为例

Mechanism and Influencing Factor Analysis of Near-Well Stimulation for Hot Dry Rock Reservoirs by Liquid CO Phase Transition Blasting: Applied to Matouying Uplift.

作者信息

Niu Qinghe, Yao Mingyu, Yuan Junhong, Chang Jiangfang, Qi Xiaofei, Shangguan Shuantong, Wang Qizhi, Wang Wei, Yuan Wei

机构信息

Key Laboratory of Roads and Railway Engineering Safety Control (Shijiazhuang Tiedao University), Ministry of Education, Shijiazhuang 050043, China.

Hebei Technology and Innovation Center on Safe and Efficient Mining of Metal Mines, Shijiazhuang 050043, China.

出版信息

ACS Omega. 2025 Jan 14;10(3):2819-2832. doi: 10.1021/acsomega.4c08776. eCollection 2025 Jan 28.

Abstract

To improve the heat transfer efficiency of the hot dry rock (HDR) well group, a near-well stimulation method of liquid CO phase transition blasting (LCO-PB) is put forward, the fracturing characteristics and mechanism of samples induced by impact dynamic load are analyzed, the effects of hydraulic fracturing cracks, buried depth, shock wave amplitude, and blasting frequency on the reservoir stimulation are clarified, and feasible suggestions have been proposed for its on-site application. Results show that the dynamic load applied by LCO-PB can effectively increase the number and connectivity of cracks and enhance the complexity of damaged cracks. The existence of hydraulic fracturing cracks has a promoting effect on the generation and distribution because blasting stress wave can reflect and refract in the hydraulic fracturing cracks and torn apart the surrounding area. The buried depth has a suppressive effect on the impact range of blasting because its increases the difficulty of reservoir crack initiation. The shock wave amplitude of LCO-PB is beneficial for the fracturing effect of the reservoir while it also increases the risk of wellbore damage. There is a linear positive correlation between the blasting frequency and the crack zone area, and there is an optimal blasting frequency to form a connected crack network and avoid serious damage to the wellbore. For HDR reservoirs with large buried depth, prefracturing, increasing the shock wave amplitude, and selecting the appropriate blasting frequency can significantly improve the near-well stimulation effect and promote the exploitation of HDR resources.

摘要

为提高干热岩井组的传热效率,提出了一种近井液态CO相变爆破增产方法,分析了冲击动载荷作用下岩样的破裂特性及机理,明确了水力压裂裂缝、埋深、冲击波幅值和爆破频率对储层改造的影响,并对其现场应用提出了可行建议。结果表明,液态CO相变爆破施加的动载荷能有效增加裂缝数量与连通性,增强损伤裂缝的复杂性。水力压裂裂缝的存在对裂缝产生与分布有促进作用,因为爆破应力波在水力压裂裂缝中会发生反射和折射,进而撕裂周边区域。埋深对爆破影响范围有抑制作用,因其增加了储层裂缝起裂难度。液态CO相变爆破的冲击波幅值有利于储层压裂效果,但也增加了井筒损伤风险。爆破频率与裂缝区面积呈线性正相关,存在一个最优爆破频率以形成连通裂缝网络并避免井筒严重损伤。对于埋深较大的干热岩储层,进行预压裂、增加冲击波幅值并选择合适的爆破频率可显著提高近井增产效果,促进干热岩资源的开发。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7809/11780426/f0c91ec063da/ao4c08776_0001.jpg

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