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METHANE PRODUCTION STRATEGIES FOR OCEANIC GAS HYDRATE RESERVOIRS

机译:海洋天然气水合物储层的甲烷生产策略

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Gas hydrates can be an efficient replacement for the conventional fossil fuels, as the large amount of methane gas is trapped in the gas hydrate reservoirs that can be used as a potential source of energy. In this study, we investigate the impact of a combination of horizontal and vertical wells on the gas production from oceanic Class-2, unconfined gas hydrate reservoirs. An In-house multicomponent, multiphase, thermal, 3-D finite volume simulator is used. Different locations of horizontal and vertical wells as warm water injectors and methane gas producers are investigated. For unconfined reservoirs, depressurization is found to be ineffective with horizontal and vertical wells. Horizontal warm water injectors are more effective for gas production. The gas production increases from 22% of original gas in place (OIGP) when vertical injector is used to 48% of OGIP when horizontal injector is used.
机译:天然气水合物可以有效替代传统的化石燃料,因为大量的甲烷气体被困在天然气水合物储层中,可以用作潜在的能源。在这项研究中,我们调查了水平井和垂直井组合对海洋2级无限制天然气水合物储层天然气生产的影响。使用内部多组分,多相,热3D有限体积模拟器。研究了水平井和垂直井在热水注入器和甲烷气体生产器中的不同位置。对于无限制的油藏,发现水平和垂直井的减压都是无效的。卧式热水喷射器对天然气生产更为有效。气体产量从使用立式喷油器时的原始天然气(OIGP)的22%增加到使用卧式喷油器时的OGIP的48%。

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