1. Simulation of gas production from hydrate reservoirs (AT1) of Eastern Nankai Trough, Japan
- Author
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MereySukru, SinghDevendra N, KomiyaAtsuki, MaruyamaShigenao, LijithKoorthedath Pullayikodi, FengYongchang, and ChenLin
- Subjects
Environmental Engineering ,Energy demand ,Petroleum engineering ,Clathrate hydrate ,0211 other engineering and technologies ,02 engineering and technology ,010501 environmental sciences ,Management, Monitoring, Policy and Law ,Geotechnical Engineering and Engineering Geology ,01 natural sciences ,Nankai trough ,Geochemistry and Petrology ,Environmental Chemistry ,Hydrate ,Waste Management and Disposal ,Geology ,021101 geological & geomatics engineering ,0105 earth and related environmental sciences ,Nature and Landscape Conservation ,Water Science and Technology - Abstract
Gas hydrates are regarded as one of the most promising alternative sources of energy, which have the potential to address the energy demand of a contemporary society. Based on the field explorations in the Eastern Nankai Trough (Japan), a multilayered hydrate reservoir model has been conceptualised and its behaviours during depressurisation production are simulated. This model incorporates the effects of the initial reservoir temperature and permeability on the mechanism of hydrate dissociation, which in turn affects the gas production. It is shown that the dissociation process is largely affected by the initial temperature distribution within the reservoir layers, and the ‘warmer’ reservoirs show (consistently) higher production potential. Furthermore, the gas production could be improved significantly, by increasing the permeability of the wellbore region, which can be achieved through the fracturing process. The close match between the simulation results and the field tests is noteworthy. The proposed multilayered model would be quite useful for analysing the efficacy of the ‘production strategy’, in most real-life situations.
- Published
- 2023