印度Raniganj煤田煤层气储层建模与预测

Methane Pub Date : 2022-09-21 DOI:10.3390/methane1040019
D. Panwar, R. Chaurasia, V. K. Saxena, Ashutosh Kumar Singh
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引用次数: 5

摘要

印度对清洁能源的需求正在增加。在寻找替代能源的过程中,煤层气因其作为一种良好能源的潜力而备受关注。在煤化过程中,煤层中捕获甲烷气体,然后在煤矿开采过程中释放。煤层气分离对经济效益和甲烷减排都至关重要。煤层甲烷生产是减少温室气体排放和提供安全采矿作业环境的有效途径。在印度,最近观察到了商业规模的煤层气生产。本文试图了解并建立印度Raniganj煤田Sitarampur区块冈瓦纳大陆煤层的煤层气储层模拟三维挖掘(COMET3)。为从储层中回收甲烷,进行了为期25年的模拟研究。从模拟研究中可以观察到,3.72亿立方米二氧化碳当量的温室气体排放可以通过在空间和时间上提取甲烷来防止。裂缝气体浓度随时间增加,观察到裂缝在3000天内完全饱和。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling and Forecasting of Coal Bed Methane Reservoir from Raniganj Coalfield, India
Demand for a cleaner source of energy is increasing in India. In the search for alternate energy sources, coal bed methane gas receives considerable attention for its potential as a good energy source. During the coalification process, methane gas is captured in the coal seams and later released during coal mining operations. Coal bed methane separation is crucial for both economic benefit and methane emission reduction. The methane production from seams is an efficient way to reduce greenhouse emissions and provide a safe mining operation environment. In India, the production of coal bed methane on a commercial scale has been recently observed. In the present paper, an attempt is made to understand and establish a 3-D excavation of coal bed methane from reservoir simulation (COMET3) for Gondwana coal seams in the Sitarampur block of the Raniganj coalfield in India. The simulation study was carried out for a period of 25 years for the recovery of methane from the reservoir. It is observed from the simulation study that 372 million cubic meters CO2 equivalent greenhouse gas emissions can be prevented by the extraction of methane with space and time. The fracture gas concentration increases with time, and it is observed that fractures are fully saturated with gas in 3000 days.
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