studyonthedissociationbehaviorofgashydrateinporoussedimentbasedonfractaltheory

The dissociation process of gas hydrate was regarded as a gas-solid reaction without solid production layer when the temperature was above the zero centigrade. Based on the shrinking core model and the fractal theory, a fractional dimension dynamical model for gas hydrate dissociation in porous sedi...

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Main Authors: 杨海健, 李小森, 陈朝阳, 颜克凤, 李刚, 黄宁生
Format: Report
Language:English
Published: 2009
Subjects:
Online Access:http://ir.giec.ac.cn/handle/344007/19872
http://ir.giec.ac.cn/handle/344007/19873
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spelling ftchacadsciegiec:oai:ir.giec.ac.cn:344007/19873 2023-05-15T17:11:44+02:00 studyonthedissociationbehaviorofgashydrateinporoussedimentbasedonfractaltheory 杨海健 李小森 陈朝阳 颜克凤 李刚 黄宁生 2009 http://ir.giec.ac.cn/handle/344007/19872 http://ir.giec.ac.cn/handle/344007/19873 英语 eng actachimicasinica http://ir.giec.ac.cn/handle/344007/19872 http://ir.giec.ac.cn/handle/344007/19873 期刊论文 2009 ftchacadsciegiec 2022-09-23T14:13:48Z The dissociation process of gas hydrate was regarded as a gas-solid reaction without solid production layer when the temperature was above the zero centigrade. Based on the shrinking core model and the fractal theory, a fractional dimension dynamical model for gas hydrate dissociation in porous sediment was established. The new approach of evaluating the fractal dimension of the porous media was also presented. The fractional dimension dynamical model for gas hydrate dissociation was examined with the previous experimental data of methane hydrate and carbon dioxide hydrate dissociations, respectively. The calculated results indicate that the fractal dimensions of porous media acquired with this method agree well with the previous study. With the absolute average deviation (AAD) below 10%, the present model provided satisfactory predictions for the dissociation process of methane hydrate and carbon dioxide hydrate. Report Methane hydrate Guangzhou Institute of Energy Conversion, Chinese Academy of Sciences: GIEC OpenIR
institution Open Polar
collection Guangzhou Institute of Energy Conversion, Chinese Academy of Sciences: GIEC OpenIR
op_collection_id ftchacadsciegiec
language English
description The dissociation process of gas hydrate was regarded as a gas-solid reaction without solid production layer when the temperature was above the zero centigrade. Based on the shrinking core model and the fractal theory, a fractional dimension dynamical model for gas hydrate dissociation in porous sediment was established. The new approach of evaluating the fractal dimension of the porous media was also presented. The fractional dimension dynamical model for gas hydrate dissociation was examined with the previous experimental data of methane hydrate and carbon dioxide hydrate dissociations, respectively. The calculated results indicate that the fractal dimensions of porous media acquired with this method agree well with the previous study. With the absolute average deviation (AAD) below 10%, the present model provided satisfactory predictions for the dissociation process of methane hydrate and carbon dioxide hydrate.
format Report
author 杨海健
李小森
陈朝阳
颜克凤
李刚
黄宁生
spellingShingle 杨海健
李小森
陈朝阳
颜克凤
李刚
黄宁生
studyonthedissociationbehaviorofgashydrateinporoussedimentbasedonfractaltheory
author_facet 杨海健
李小森
陈朝阳
颜克凤
李刚
黄宁生
author_sort 杨海健
title studyonthedissociationbehaviorofgashydrateinporoussedimentbasedonfractaltheory
title_short studyonthedissociationbehaviorofgashydrateinporoussedimentbasedonfractaltheory
title_full studyonthedissociationbehaviorofgashydrateinporoussedimentbasedonfractaltheory
title_fullStr studyonthedissociationbehaviorofgashydrateinporoussedimentbasedonfractaltheory
title_full_unstemmed studyonthedissociationbehaviorofgashydrateinporoussedimentbasedonfractaltheory
title_sort studyonthedissociationbehaviorofgashydrateinporoussedimentbasedonfractaltheory
publishDate 2009
url http://ir.giec.ac.cn/handle/344007/19872
http://ir.giec.ac.cn/handle/344007/19873
genre Methane hydrate
genre_facet Methane hydrate
op_relation actachimicasinica
http://ir.giec.ac.cn/handle/344007/19872
http://ir.giec.ac.cn/handle/344007/19873
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