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Evaluation for Offshore Carbon Dioxide Geological Storage Potential in the Gulf of Thailand

机译:泰国海湾海上二氧化碳地质储存潜力评价

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Currently climate change is one of the most concern problems because of an increase in the amount of carbon dioxide (CO2) in the atmosphere. This gas comes from the industries like power generation. Carbon capture and storage (CCS) is the practical technology to mitigate CO2 especially geological storage. In Thailand, the main potential of geological storage is in the Gulf of Thailand especially in the oil and gas fields. However, the research on this in Thailand is scarce. Consequently, this work is focusing on the simulation of CO2 geological storage in the formations of oil and gas reservoirs in the Gulf of Thailand. The fracture pressure and the storage capacity have been estimated. Also, the pressure buildup and plume migration have been simulated with various conditions by using real geological data in the area. CO2 injection is used from 1,000-4,000 tons per day with the depth from 2,000-2,500 meters and the results are studied for 50 years as a monitoring period. The results present that with the actual formation characteristics, CO2 storage in this area has potential. Moreover, pressure buildup and plume migration are presented the storage and monitoring for 50 years. As a fundamental knowledge, this study can contribute to CO2 storage in an offshore area in Thailand.
机译:目前气候变化是最关心的问题之一,因为大气中的二氧化碳量(CO2)的增加。这种气体来自电力等行业。碳捕获和储存(CCS)是减轻CO2尤其是地质储存的实用技术。在泰国,地质储存的主要潜力在泰国的湾,特别是在石油和天然气领域。然而,泰国的研究是稀缺的。因此,这项工作专注于泰国海湾油气藏的结构模拟二氧化碳地质储存。估计裂缝压力和储存能力。此外,通过使用该地区的真实地质数据来模拟压力累积和羽流迁移。 CO2注射使用每天1,000-4,000吨,深度从2,000-2,500米处,结果为50年的监测期。结果显示,在该区域中的CO2储存具有潜力。此外,压力堆积和羽流迁移为50年来储存和监控。作为一种基本知识,该研究可以在泰国的海上地区进行二氧化碳储存。

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