An optimal design of crushing parameters of marine gas hydrate reservoirs in solid fluidization exploitation
نویسندگان
چکیده
منابع مشابه
Development of Hydrate Formation Phase Envelope: An Experimental Approach in One of the Iranian Gas Reservoirs
Iran's proved natural gas reserves are the world's second largest reserves. Mainly, because of different climate changes and different reservoirs characterizations, studying the behavior of producing outcome fluids and their transportation, is of major interest. One of the main problems occur in the gas reservoirs is related to the hydrate formation while producing from a well, either in produc...
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Naturally occurring gas hydrates are regarded as an important future source of energy and considerable efforts are currently being invested to develop methods for an economically viable recovery of this resource. The recovery of natural gas from gas hydrate deposits has been studied by a number of researchers. Depressurization of the reservoir is seen as a favorable method because of its relati...
متن کاملdevelopment of hydrate formation phase envelope: an experimental approach in one of the iranian gas reservoirs
iran's proved natural gas reserves are the world's second largest reserves. mainly, because of different climate changes and different reservoirs characterizations, studying the behavior of producing outcome fluids and their transportation, is of major interest. one of the main problems occur in the gas reservoirs is related to the hydrate formation while producing from a well, either in produc...
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Small-scale morphology of gas hydrate is important for understanding the formation of gas hydrate deposits, for estimating the concentrations of gas hydrate from geophysical data, and for predicting their response to climate change or commercial production. The recent use of borehole pressure coring tools has allowed marine gas-hydrate-bearing sediments to be recovered with centimeter to sub-mi...
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ژورنال
عنوان ژورنال: Natural Gas Industry B
سال: 2019
ISSN: 2352-8540
DOI: 10.1016/j.ngib.2018.10.006