Experimental investigation of optimization of well spacing for gas recovery from methane hydrate reservoir in sandy sediment by heat stimulation

Due to the vast amount of recoverable natural gas predicated (∼3000 TCM) in natural gas hydrate on earth, natural gas hydrate has the potential to become the next generation of unconventional source of fuel. Recently years, laboratory researches are still underway to advance our understanding of the...

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Main Authors: Wang, Yi, Feng, Jing-Chun, Li, Xiao-Sen, Zhang, Yu
Format: Article in Journal/Newspaper
Language:unknown
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Online Access:http://www.sciencedirect.com/science/article/pii/S0306261917308164
id ftrepec:oai:RePEc:eee:appene:v:207:y:2017:i:c:p:562-572
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spelling ftrepec:oai:RePEc:eee:appene:v:207:y:2017:i:c:p:562-572 2024-04-14T08:14:52+00:00 Experimental investigation of optimization of well spacing for gas recovery from methane hydrate reservoir in sandy sediment by heat stimulation Wang, Yi Feng, Jing-Chun Li, Xiao-Sen Zhang, Yu http://www.sciencedirect.com/science/article/pii/S0306261917308164 unknown http://www.sciencedirect.com/science/article/pii/S0306261917308164 article ftrepec 2024-03-19T10:28:27Z Due to the vast amount of recoverable natural gas predicated (∼3000 TCM) in natural gas hydrate on earth, natural gas hydrate has the potential to become the next generation of unconventional source of fuel. Recently years, laboratory researches are still underway to advance our understanding of the theory and technology for natural gas hydrate exploitation. In this work, experiments of methane hydrate dissociation by heat stimulation with different well-spacing were firstly performed in the Cubic Hydrate Simulator (CHS). The five-spot vertical wells (5-wells) and the dual vertical wells (D-wells) were applied as the multi-well strategies. The well spacing of D-wells is twice as larger as that of the 5-wells. The influences of well spacing on the production behaviors and the heat transfer characteristics during hydrate dissociation are analyzed. The experimental results indicate that a maximum range for hydrate dissociation exists during hydrate dissociation by heat stimulation method, which is in direct proportion to the heat injection rate (Rinj). The optimized well-spacing should equal to the maximum range of hydrate dissociation. For maximizing average gas production rate per well, the larger well spacing and the higher Rinj benefit for gas recovery. On the other hand, for minimizing the heat consumption per unit of gas production (HGP), the moderate Rinj and the shorter well spacing benefit for gas recovery. In order to evaluate the gas recovery by heat stimulation with different well spacing and Rinj, an evaluation factor is firstly proposed, which considers the combined effect of the gas production rate per well, the HGP, and the hydrate dissociation ratio. By calculation, the optimal experimental conditions for hydrate recovery in experiments are the injection rate of 40mL/min with the longer well spacing (D-wells). The study of temperature distribution verifies the maximum range for hydrate dissociation in reservoir by heat stimulation. Hydrate dissociation; Heat stimulation; Well spacing; Experiment; ... Article in Journal/Newspaper Methane hydrate RePEc (Research Papers in Economics)
institution Open Polar
collection RePEc (Research Papers in Economics)
op_collection_id ftrepec
language unknown
description Due to the vast amount of recoverable natural gas predicated (∼3000 TCM) in natural gas hydrate on earth, natural gas hydrate has the potential to become the next generation of unconventional source of fuel. Recently years, laboratory researches are still underway to advance our understanding of the theory and technology for natural gas hydrate exploitation. In this work, experiments of methane hydrate dissociation by heat stimulation with different well-spacing were firstly performed in the Cubic Hydrate Simulator (CHS). The five-spot vertical wells (5-wells) and the dual vertical wells (D-wells) were applied as the multi-well strategies. The well spacing of D-wells is twice as larger as that of the 5-wells. The influences of well spacing on the production behaviors and the heat transfer characteristics during hydrate dissociation are analyzed. The experimental results indicate that a maximum range for hydrate dissociation exists during hydrate dissociation by heat stimulation method, which is in direct proportion to the heat injection rate (Rinj). The optimized well-spacing should equal to the maximum range of hydrate dissociation. For maximizing average gas production rate per well, the larger well spacing and the higher Rinj benefit for gas recovery. On the other hand, for minimizing the heat consumption per unit of gas production (HGP), the moderate Rinj and the shorter well spacing benefit for gas recovery. In order to evaluate the gas recovery by heat stimulation with different well spacing and Rinj, an evaluation factor is firstly proposed, which considers the combined effect of the gas production rate per well, the HGP, and the hydrate dissociation ratio. By calculation, the optimal experimental conditions for hydrate recovery in experiments are the injection rate of 40mL/min with the longer well spacing (D-wells). The study of temperature distribution verifies the maximum range for hydrate dissociation in reservoir by heat stimulation. Hydrate dissociation; Heat stimulation; Well spacing; Experiment; ...
format Article in Journal/Newspaper
author Wang, Yi
Feng, Jing-Chun
Li, Xiao-Sen
Zhang, Yu
spellingShingle Wang, Yi
Feng, Jing-Chun
Li, Xiao-Sen
Zhang, Yu
Experimental investigation of optimization of well spacing for gas recovery from methane hydrate reservoir in sandy sediment by heat stimulation
author_facet Wang, Yi
Feng, Jing-Chun
Li, Xiao-Sen
Zhang, Yu
author_sort Wang, Yi
title Experimental investigation of optimization of well spacing for gas recovery from methane hydrate reservoir in sandy sediment by heat stimulation
title_short Experimental investigation of optimization of well spacing for gas recovery from methane hydrate reservoir in sandy sediment by heat stimulation
title_full Experimental investigation of optimization of well spacing for gas recovery from methane hydrate reservoir in sandy sediment by heat stimulation
title_fullStr Experimental investigation of optimization of well spacing for gas recovery from methane hydrate reservoir in sandy sediment by heat stimulation
title_full_unstemmed Experimental investigation of optimization of well spacing for gas recovery from methane hydrate reservoir in sandy sediment by heat stimulation
title_sort experimental investigation of optimization of well spacing for gas recovery from methane hydrate reservoir in sandy sediment by heat stimulation
url http://www.sciencedirect.com/science/article/pii/S0306261917308164
genre Methane hydrate
genre_facet Methane hydrate
op_relation http://www.sciencedirect.com/science/article/pii/S0306261917308164
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