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CONDİTİONS OF GAS HYDRATE FORMATİON İN MAİN GAS PİPELİNES AND METHODS OF GAS HYDRATE CONTROL
Power Engineering ProblemsEnsuring reliable operation of the main gas pipeline is one of the most urgent issues of hydrocarbon transportation in the modern era. Thus, as a result of certain geological-technological and temperature environmental impacts during the operation of the main gas pipeline there are difficult to eliminate complications due to the formation of gas ...
F V KARIMLI, A F GOCHUYEVA
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International Geology Review, 1987
On the whole, the formation of gas hydrates in the ocean sediments is determined by a large number of factors: the change in temperature and pressure with depth in the oceans, the magnitude of the heat flow, geothermal gradient, and thermal-conductivity of the sediments, the composition of the sediments and gas, the mineralization of the sea water, etc.
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On the whole, the formation of gas hydrates in the ocean sediments is determined by a large number of factors: the change in temperature and pressure with depth in the oceans, the magnitude of the heat flow, geothermal gradient, and thermal-conductivity of the sediments, the composition of the sediments and gas, the mineralization of the sea water, etc.
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Memory effect of gas hydrate: Influencing factors of hydrate reformation and dissociation behaviors
Applied Energy, 2022Xuan Kou, Jing-Chun Feng, Xiao-Sen Li
exaly
International Petroleum Technology Conference, 2008
This reference is for an abstract only. A full paper was not submitted for this conference. Abstract A new process of transportation of Natural Gas using Gas Hydrate is presented as applicable to land transport in India.
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This reference is for an abstract only. A full paper was not submitted for this conference. Abstract A new process of transportation of Natural Gas using Gas Hydrate is presented as applicable to land transport in India.
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The influence of gas hydrate cyclicity on global and regional gas hydrate inventories
Gas hydrate (GH) formation and dissociation in natural systems is a complex, multi-process phenomenon controlled by local pressure-temperature-salinity (p-T-s) conditions and availability of methane gas. Our recent findings based on detailed analyses of GH systems using high fidelity multi-physics numerical model suggest that the long-term stability ofEwa Burwicz-Galerne, Shubhangi Gupta
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