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分形断裂网络中煤粉颗粒运动的研究

Study on the Movement of Pulverized Coal Particles in Fractal Fracture Network.

作者信息

Tang Songlei, Liu Qiang, Tang Hong, Yang Feng

机构信息

Xi'an Modern Chemistry Research Institution, Xi'an 710065, China.

出版信息

ACS Omega. 2023 Jul 16;8(29):26369-26378. doi: 10.1021/acsomega.3c02902. eCollection 2023 Jul 25.

Abstract

Coalbed methane (CBM) exploitation is a complex multiphase flow process. With the development of CBM extraction technology, it is recognized that the migration of reservoir fluid in the fracture network is affected by the matrix fracture structure, fracture width, and pulverized coal particles plugging, therefore the fluid-particle coupling problem has received increasing attention. In this paper, six groups of fracture models with different fractal dimensions are established using the Weierstrass-Mandelbrot function, and the fluid-particle coupling phenomena in fractures with different roughness and aperture are simulated using an immersed boundary-lattice Boltzmann method (IB-LBM), by comparing the numerical simulation results with the theoretical analysis, it is proved that the IB-LBM numerical method has high accuracy and effectiveness. The effects of fractal dimension, particle size, and particle concentration on the plugging effect were investigated. The results show that the plugging effect on the fracture is enhanced with the increase of the pulverized coal particles content. When the concentration and size of pulverized coal particles are the same, the migration path of pulverized coal particles in complex fractures is more tortuous and more likely to be plugged. It may lead to a shift in the main seepage network of the fracture and the formation of new seepage channels. The research in this paper provides a data basis for the formation and plugging pattern of pulverized coal particles in coal seam fractures, which can provide a basis for the control of pulverized coal particles concentration in CBM drainage.

摘要

煤层气(CBM)开采是一个复杂的多相流过程。随着煤层气开采技术的发展,人们认识到储层流体在裂缝网络中的运移受基质裂缝结构、裂缝宽度和煤粉颗粒堵塞的影响,因此流体 - 颗粒耦合问题受到越来越多的关注。本文利用魏尔斯特拉斯 - 曼德勃罗函数建立了六组不同分形维数的裂缝模型,并采用浸入边界 - 格子玻尔兹曼方法(IB - LBM)模拟了不同粗糙度和开度裂缝中的流体 - 颗粒耦合现象,通过将数值模拟结果与理论分析相比较,证明了IB - LBM数值方法具有较高的精度和有效性。研究了分形维数、颗粒尺寸和颗粒浓度对堵塞效果的影响。结果表明,随着煤粉颗粒含量的增加,对裂缝的堵塞效果增强。当煤粉颗粒的浓度和尺寸相同时,煤粉颗粒在复杂裂缝中的运移路径更加曲折,更易发生堵塞。这可能导致裂缝主渗流网络的偏移和新渗流通道的形成。本文的研究为煤层裂缝中煤粉颗粒的形成和堵塞规律提供了数据依据,可为煤层气排采中煤粉颗粒浓度的控制提供依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d7fa/10373186/718c1b457fe1/ao3c02902_0002.jpg

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