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首页> 外文期刊>Journal of natural gas science and engineering >Utilization of aquifer storage in flare gas reduction
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Utilization of aquifer storage in flare gas reduction

机译:利用含水层存储减少火炬气

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Flaring associated gas from oil wells has resulted in concerns about CO2 emissions and wasted energy. In this paper, an integrated flare gas reduction system that combines natural gas liquids separation and underground storage of lean gas in aquifers is studied. This flare gas reduction system takes advantage of peak natural gas demand and prices in winter. Therefore, revenues from both lean gas natural gas liquids sales would compensate for the year-long natural gas liquids separation costs. Aquifer permeability and depth are the major factors in determining the storage cost, which should be lower than the marginal revenue derived from the seasonal difference in natural gas prices. The site selection method and governing equations are presented, and a case study applying the proposed system to the Bakken oil field was performed. The results indicated that when aquifer permeability was low (<200 mD), permeability had a larger impact on the storage cost than aquifer depth, and the cost decreased with increasing permeability and depth. When aquifer permeability was relatively high (>200 mD), depth was the dominating factor and the cost increased with depth. Ranges of permeability and depth for which the storage cost is lower than the seasonal price difference of natural gas were determined. The economic estimation approach presented in this paper can be used to select appropriate storage sites and rich gas processing technologies. (C) 2015 Elsevier B.V. All rights reserved.
机译:来自油井的伴生气燃烧导致对二氧化碳排放和能源浪费的担忧。本文研究了一种集成的火炬气还原系统,该系统将天然气液分离和地下贫气储存在含水层中相结合。这种火炬气减少系统利用了冬季高峰天然气需求和价格优势。因此,来自两种贫气天然气液体销售的收入将补偿一年期的天然气液体分离成本。含水层的渗透性和深度是决定存储成本的主要因素,应低于天然气价格季节性差异所产生的边际收益。提出了选址方法和控制方程,并进行了将该系统应用于巴肯油田的案例研究。结果表明,当含水层渗透率低(<200 mD)时,渗透率对储层成本的影响大于含水层深度,成本随渗透率和深度的增加而降低。当含水层渗透率较高(> 200 mD)时,深度是主要因素,成本随深度增加。确定了存储成本低于天然气季节性价格差异的渗透率和深度范围。本文提出的经济估算方法可用于选择合适的存储地点和丰富的天然气处理技术。 (C)2015 Elsevier B.V.保留所有权利。

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