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Kinetics and Dissolution Mechanisms of Oolitic Limestone Under Burial Condition
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作者 Kangjun Huang Zhengyu Bao Tianfu Zhang 《地学前缘》 EI CAS CSCD 北大核心 2009年第S1期137-137,共1页
In order to study the control factors and mechanism of oolitic limestone reservoir being corroded by organic acid produced in burial stage,the reactions of acetic acid(pH=3)with oolitic limestone were investigated usi... In order to study the control factors and mechanism of oolitic limestone reservoir being corroded by organic acid produced in burial stage,the reactions of acetic acid(pH=3)with oolitic limestone were investigated using the rotating-disk Corrosion Reactor System(CRS).The effects of disk rotational speed,temperature and system pressure were examined. 展开更多
关键词 oolitic limestone reservoir acetic acid dissolution kinetics mechanisms the rotateng-disk corrosion reactor system
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A composite sphere assemblage model for porous oolitic rocks:Application to thermal conductivity 被引量:1
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作者 F. Chen A. Giraud +1 位作者 D. Grgic K. Kalo 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2017年第1期54-61,共8页
The present work is devoted to the determination of linear effective thermal conductivity of porous rocks characterized by an assemblage of grains(oolites) coated by a matrix. Two distinct classes of pores, i.e.microp... The present work is devoted to the determination of linear effective thermal conductivity of porous rocks characterized by an assemblage of grains(oolites) coated by a matrix. Two distinct classes of pores, i.e.micropores or intra oolitic pores(oolite porosity) and mesopores or inter oolitic pores(inter oolite porosity), are taken into account. The overall porosity is supposed to be connected and decomposed into oolite porosity and matrix porosity. Within the framework of Hashin composite sphere assemblage(CSA)models, a two-step homogenization method is developed. At the first homogenization step, pores are assembled into two layers by using self-consistent scheme(SCS). At the second step, the two porous layers constituting the oolites and the matrix are assembled by using generalized self-consistent scheme(GSCS) and referred to as three-phase model. Numerical results are presented for data representative of a porous oolitic limestone. It is shown that the influence of porosity on the overall thermal conductivity of such materials may be significant. 展开更多
关键词 Effective thermal conductivity Three-phase model oolitic limestone Composite sphere assemblage(CSA) model
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