The determining factor of hydrate dissociation rate in the sediments with different water saturations

In nature, gas hydrate is mainly distributed in permafrost region and deep ocean sediments. For these two types of hydrate reservoirs, water contents in the sediments were different. The water content has a large influence on the characteristics of heat transfer and fluid flow in the sediments, ther...

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Main Authors: Li, Xiao-Yan, Li, Xiao-Sen, Wang, Yi, Liu, Jian-Wu, Hu, Heng-Qi
Format: Article in Journal/Newspaper
Language:unknown
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Online Access:http://www.sciencedirect.com/science/article/pii/S0360544220307970
id ftrepec:oai:RePEc:eee:energy:v:202:y:2020:i:c:s0360544220307970
record_format openpolar
spelling ftrepec:oai:RePEc:eee:energy:v:202:y:2020:i:c:s0360544220307970 2024-04-14T08:18:19+00:00 The determining factor of hydrate dissociation rate in the sediments with different water saturations Li, Xiao-Yan Li, Xiao-Sen Wang, Yi Liu, Jian-Wu Hu, Heng-Qi http://www.sciencedirect.com/science/article/pii/S0360544220307970 unknown http://www.sciencedirect.com/science/article/pii/S0360544220307970 article ftrepec 2024-03-19T10:34:25Z In nature, gas hydrate is mainly distributed in permafrost region and deep ocean sediments. For these two types of hydrate reservoirs, water contents in the sediments were different. The water content has a large influence on the characteristics of heat transfer and fluid flow in the sediments, thereby affecting the hydrate dissociation behavior. In this paper, the experiments of hydrate dissociation by depressurization in sediments with different water saturations were conducted. The influences of water saturation on the pressure, the temperature, the gas production, the water production, and the hydrate dissociation rate were analyzed. The experimental results showed that, in the depressurization stage (DS), the rate of pressure dropping and the amount of hydrate reformation increased with the raise of the water saturation in the sediments. In the constant pressure stage (CPS), although the heat conduction rate of the sediments increased with the increase of the water saturation, the mass transport rate of the gas released from hydrate dissociation was limited due to the increase of water saturation. As a result, the hydrate dissociation rate decreased with the increase of the water saturation in the sediments. According to these experimental results, during the hydrate dissociation in the sediments with different water saturations, the hydrate dissociation rate is determined by the mass transport rate of the gas released from the hydrate dissociation. For the hydrate reservoirs with the high-water saturation, the hydrate dissociation rate is largely limited by the diffusion rate of gas released from hydrate dissociation. Hence, the key factor to improve the hydrate dissociation rate in the sediments with high water saturation is to increase the diffusion rate of gas in the sediments. Hydrate dissociation; Depressurization; Determining factor; Mass transport; Gas diffusion; Article in Journal/Newspaper permafrost RePEc (Research Papers in Economics)
institution Open Polar
collection RePEc (Research Papers in Economics)
op_collection_id ftrepec
language unknown
description In nature, gas hydrate is mainly distributed in permafrost region and deep ocean sediments. For these two types of hydrate reservoirs, water contents in the sediments were different. The water content has a large influence on the characteristics of heat transfer and fluid flow in the sediments, thereby affecting the hydrate dissociation behavior. In this paper, the experiments of hydrate dissociation by depressurization in sediments with different water saturations were conducted. The influences of water saturation on the pressure, the temperature, the gas production, the water production, and the hydrate dissociation rate were analyzed. The experimental results showed that, in the depressurization stage (DS), the rate of pressure dropping and the amount of hydrate reformation increased with the raise of the water saturation in the sediments. In the constant pressure stage (CPS), although the heat conduction rate of the sediments increased with the increase of the water saturation, the mass transport rate of the gas released from hydrate dissociation was limited due to the increase of water saturation. As a result, the hydrate dissociation rate decreased with the increase of the water saturation in the sediments. According to these experimental results, during the hydrate dissociation in the sediments with different water saturations, the hydrate dissociation rate is determined by the mass transport rate of the gas released from the hydrate dissociation. For the hydrate reservoirs with the high-water saturation, the hydrate dissociation rate is largely limited by the diffusion rate of gas released from hydrate dissociation. Hence, the key factor to improve the hydrate dissociation rate in the sediments with high water saturation is to increase the diffusion rate of gas in the sediments. Hydrate dissociation; Depressurization; Determining factor; Mass transport; Gas diffusion;
format Article in Journal/Newspaper
author Li, Xiao-Yan
Li, Xiao-Sen
Wang, Yi
Liu, Jian-Wu
Hu, Heng-Qi
spellingShingle Li, Xiao-Yan
Li, Xiao-Sen
Wang, Yi
Liu, Jian-Wu
Hu, Heng-Qi
The determining factor of hydrate dissociation rate in the sediments with different water saturations
author_facet Li, Xiao-Yan
Li, Xiao-Sen
Wang, Yi
Liu, Jian-Wu
Hu, Heng-Qi
author_sort Li, Xiao-Yan
title The determining factor of hydrate dissociation rate in the sediments with different water saturations
title_short The determining factor of hydrate dissociation rate in the sediments with different water saturations
title_full The determining factor of hydrate dissociation rate in the sediments with different water saturations
title_fullStr The determining factor of hydrate dissociation rate in the sediments with different water saturations
title_full_unstemmed The determining factor of hydrate dissociation rate in the sediments with different water saturations
title_sort determining factor of hydrate dissociation rate in the sediments with different water saturations
url http://www.sciencedirect.com/science/article/pii/S0360544220307970
genre permafrost
genre_facet permafrost
op_relation http://www.sciencedirect.com/science/article/pii/S0360544220307970
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