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Petrophysical characterization of high-rank coal by nuclear magnetic resonance: a case study of the Baijiao coal reservoir, SW China

机译:核磁共振高级煤的岩石物理特征 - 以白娇煤水库,SW中国为例

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摘要

To better apply nuclear magnetic resonance (NMR) to evaluate the petrophysical characterization of high-rank coal, six anthracite samples from the Baijiao coal reservoir were measured by NMR. The porosity, T2 cutoff value, permeability and pore type were analysed using the transverse relaxation time (T2) spectrum before and after centrifugation. The results show that the T2 spectrum of water-saturated anthracite can be divided into a discontinuous and continuous trimodal distribution. According to the connectivity among pores, three T2 spectrum peaks were identified at the relaxation times of 0.01–1.7 ms, 1.7–65 ms and greater than 65 ms, which correspond to the micropores (less than 100 nm), mesopores (100–1000 nm) and macropores (greater than 1000 nm), respectively. Based on the T2 cutoff value, we divided the T2 spectrum into two parts: bound fluid and free fluid. By comparing two classic permeability models, we proposed a permeability model to calculate the permeability of anthracite. This result demonstrates that NMR has great significance to the exploration of coal reservoirs and to the understanding of the development of coalbed methane.
机译:为了更好地应用核磁共振(NMR)来评估高煤阶的岩石物理特性,从白蕉煤储层六大无烟煤样品进行NMR测量。使用前和离心后的横向弛豫时间(T2)光谱中的孔隙率,T2截止值,渗透性和孔隙类型进行分析。研究结果表明,水饱和的无烟煤的T2谱可以分成不连续的和连续的三峰分布。根据孔之间的连通,三个T2谱峰的0.01-1.7毫秒,1.7-65毫秒和大于65毫秒的弛豫时间,其对应于微孔(小于100nm),中孔被确定(100-1000纳米)和大孔(大于1000纳米),分别。基于所述T2截止值,我们把T2频谱分成两个部分:束缚流体和自由流体。通过比较两个经典的通透性模型,我们提出了一个渗透率模型来计算无烟煤的渗透性。这一结果表明,NMR有煤储层的勘探和煤层气开发的理解具有重要意义。

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