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Transport in Porous Media
基本信息
期刊名称 Transport in Porous Media
TRANSPORT POROUS MED
期刊ISSN 0169-3913
期刊官方网站 https://www.springer.com/11242
是否OA No
出版商 Springer Netherlands
出版周期 Monthly
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始发年份 1986
年文章数 144
最新影响因子 2.7(2023)  scijournal影响因子  greensci影响因子
中科院SCI期刊分区
大类学科 小类学科 Top 综述
工程技术3区 ENGINEERING, CHEMICAL 工程:化工3区
CiteScore
CiteScore排名 CiteScore SJR SNIP
学科 排名 百分位 5.3 0.591 0.933
Chemical Engineering
General Chemical Engineering
93/273 66%
Chemical Engineering
Catalysis
41/68 40%
补充信息
自引率 11.1%
H-index 75
SCI收录状况 Science Citation Index Expanded
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PubMed Central (PMC) http://www.ncbi.nlm.nih.gov/nlmcatalog?term=0169-3913%5BISSN%5D
投稿指南
期刊投稿网址 https://www.editorialmanager.com/tipm/
收稿范围
Publishes original research on physical, chemical, and biological aspects of transport in porous media
Papers on porous media research may originate in various areas of physics, chemistry, biology, natural or materials science, and engineering (chemical, civil, agricultural, petroleum, environmental, electrical, and mechanical engineering)
Emphasizes theory, (numerical) modelling, laboratory work, and non-routine applications
Publishes work of a fundamental nature, of interest to a wide readership, that provides novel insight into porous media processes
Expanded in 2007 from 12 to 15 issues per year
Transport in Porous Media publishes original research on physical and chemical aspects of transport phenomena in rigid and deformable porous media. These phenomena, occurring in single and multiphase flow in porous domains, can be governed by extensive quantities such as mass of a fluid phase, mass of component of a phase, momentum, or energy. Moreover, porous medium deformations can be induced by the transport phenomena, by chemical and electro-chemical activities such as swelling, or by external loading through forces and displacements. These porous media phenomena may be studied by researchers from various areas of physics, chemistry, biology, natural or materials science, and engineering (chemical, civil, agricultural, petroleum, environmental, electrical, and mechanical engineering).

Transport and deformation phenomena, understood from the microscopic scale upward, form the basis for deterministic and stochastic models that describe them. The models are adaptable to describe (coupled) transport phenomena and deformation in any kind of natural or engineered porous material, including: flow and contaminant transport in aquifers; oil and gas movement in petroleum reservoirs; solvent drives and enhanced oil recovery; heat and mass transport in packed bed reactors, in geothermal reservoirs, and in building materials; spread of pollutants from radioactive waste repositories; drying in porous materials; flow and transport in fuel cells, paper, and absorbing materials; filtration processes; biomedical studies of fluid and chemical transport in lungs and other organs. Also, coupling of porous media flow with other flow domains can be considered.
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