Three dimensional experimental and numerical investigations into hydrate dissociation in sandy reservoir with dual horizontal wells

In this study, both three dimensional experimental and numerical investigations of hydrate dissociation have been carried out by depressurization in conjunction with warm water stimulation using dual horizontal wells. Hydrate has been synthesized in the porous sediment in a CHS (Cubic Hydrate Simula...

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Main Authors: Feng, Jing-Chun, Wang, Yi, Li, Xiao-Sen, Li, Gang, Zhang, Yu
Format: Article in Journal/Newspaper
Language:unknown
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S0360544215010051
id ftrepec:oai:RePEc:eee:energy:v:90:y:2015:i:p1:p:836-845
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spelling ftrepec:oai:RePEc:eee:energy:v:90:y:2015:i:p1:p:836-845 2024-04-14T08:14:52+00:00 Three dimensional experimental and numerical investigations into hydrate dissociation in sandy reservoir with dual horizontal wells Feng, Jing-Chun Wang, Yi Li, Xiao-Sen Li, Gang Zhang, Yu http://www.sciencedirect.com/science/article/pii/S0360544215010051 unknown http://www.sciencedirect.com/science/article/pii/S0360544215010051 article ftrepec 2024-03-19T10:32:22Z In this study, both three dimensional experimental and numerical investigations of hydrate dissociation have been carried out by depressurization in conjunction with warm water stimulation using dual horizontal wells. Hydrate has been synthesized in the porous sediment in a CHS (Cubic Hydrate Simulator). The results of gas and water production, hydrate dissociation, and temperature distribution by numerical simulation are in good agreement with the experimental results. The results show that hydrate dissociation evolves by means of ablation with double-moving boundary. One dissociation interface moves from the injection well to the neighboring regions, and the other dissociation interface spreads from the boundary to the central reservoir. The assessment of the energy ratio shows that the depressurization in conjunction with warm water stimulation using dual horizontal wells is a promising method for hydrate dissociation. Sensitivity analyses show that raising the injection temperature causes a sharply decline of energy ratio, although it increases the gas production rate at a certain time. Additionally, reducing the intrinsic permeability of the reservoir can decrease the energy ratio and increase the time for the completion of hydrate dissociation. Methane hydrate; Experiment; Numerical simulation; Depressurization; Warm water stimulation; Horizontal well; 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 In this study, both three dimensional experimental and numerical investigations of hydrate dissociation have been carried out by depressurization in conjunction with warm water stimulation using dual horizontal wells. Hydrate has been synthesized in the porous sediment in a CHS (Cubic Hydrate Simulator). The results of gas and water production, hydrate dissociation, and temperature distribution by numerical simulation are in good agreement with the experimental results. The results show that hydrate dissociation evolves by means of ablation with double-moving boundary. One dissociation interface moves from the injection well to the neighboring regions, and the other dissociation interface spreads from the boundary to the central reservoir. The assessment of the energy ratio shows that the depressurization in conjunction with warm water stimulation using dual horizontal wells is a promising method for hydrate dissociation. Sensitivity analyses show that raising the injection temperature causes a sharply decline of energy ratio, although it increases the gas production rate at a certain time. Additionally, reducing the intrinsic permeability of the reservoir can decrease the energy ratio and increase the time for the completion of hydrate dissociation. Methane hydrate; Experiment; Numerical simulation; Depressurization; Warm water stimulation; Horizontal well;
format Article in Journal/Newspaper
author Feng, Jing-Chun
Wang, Yi
Li, Xiao-Sen
Li, Gang
Zhang, Yu
spellingShingle Feng, Jing-Chun
Wang, Yi
Li, Xiao-Sen
Li, Gang
Zhang, Yu
Three dimensional experimental and numerical investigations into hydrate dissociation in sandy reservoir with dual horizontal wells
author_facet Feng, Jing-Chun
Wang, Yi
Li, Xiao-Sen
Li, Gang
Zhang, Yu
author_sort Feng, Jing-Chun
title Three dimensional experimental and numerical investigations into hydrate dissociation in sandy reservoir with dual horizontal wells
title_short Three dimensional experimental and numerical investigations into hydrate dissociation in sandy reservoir with dual horizontal wells
title_full Three dimensional experimental and numerical investigations into hydrate dissociation in sandy reservoir with dual horizontal wells
title_fullStr Three dimensional experimental and numerical investigations into hydrate dissociation in sandy reservoir with dual horizontal wells
title_full_unstemmed Three dimensional experimental and numerical investigations into hydrate dissociation in sandy reservoir with dual horizontal wells
title_sort three dimensional experimental and numerical investigations into hydrate dissociation in sandy reservoir with dual horizontal wells
url http://www.sciencedirect.com/science/article/pii/S0360544215010051
genre Methane hydrate
genre_facet Methane hydrate
op_relation http://www.sciencedirect.com/science/article/pii/S0360544215010051
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