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疏松砂岩地层压裂充填支撑剂粒径优选 被引量:13
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作者 郭天魁 张士诚 +1 位作者 王雷 贺甲元 《中国石油大学学报(自然科学版)》 EI CAS CSCD 北大核心 2012年第1期94-100,共7页
在疏松软地层中实施压裂充填工艺,出砂和支撑剂的嵌入是造成裂缝失效的主要因素,而两者都与支撑剂的粒径有密切的关系。针对金县油田高渗储层,设计模拟裂缝壁面的嵌入与砂侵和裂缝端部的砂侵试验。在不同压力下,对两种不同粒度组成的模... 在疏松软地层中实施压裂充填工艺,出砂和支撑剂的嵌入是造成裂缝失效的主要因素,而两者都与支撑剂的粒径有密切的关系。针对金县油田高渗储层,设计模拟裂缝壁面的嵌入与砂侵和裂缝端部的砂侵试验。在不同压力下,对两种不同粒度组成的模拟地层砂进行测试,获得支撑剂在软地层中的嵌入程度、不同粒径支撑剂及其组合下的出砂量、出砂粒径以及砂侵后的导流能力。结果表明:在软地层中,支撑剂的嵌入程度随支撑剂粒径的增加而增大,随地层砂粒度中值的增大而减小;压裂充填防砂支撑剂粒径应优选为5~9倍的地层砂粒度中值;支撑剂粒径是地层砂粒度中值的6~9倍时,可形成内部砂桥;适合于压裂充填防砂的支撑剂粒径组合方案是粒径为地层砂粒度中值6~9倍的支撑剂与小于6倍的支撑剂体积比为3∶1。 展开更多
关键词 压裂充填 支撑剂 嵌入 导流能力 砂侵
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Weathering of Pisha-Sandstones in the Wind-Water Erosion Crisscross Region on the Loess Plateau 被引量:13
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作者 NI Hanbin ZHANG Liping +2 位作者 ZHANG Dengrong WU Xiyuan FU Xingtao 《Journal of Mountain Science》 SCIE CSCD 2008年第4期340-349,共10页
Two types of pisha-sandstones of purple sandstones and gray sandstones,widely distributing in the wind-water erosion crisscross region of China,were selected and used in laboratory experiments for a better understandi... Two types of pisha-sandstones of purple sandstones and gray sandstones,widely distributing in the wind-water erosion crisscross region of China,were selected and used in laboratory experiments for a better understanding of the drying-wetting-freezing weathering process resulting from the apportionment of water or salt solution to rock samples.Weathering experiments were carried out under the conditions of environment control(including temperature,moisture and salt solution).All rock samples were frequently subjected to 140 drying-wetting-freezing cycles.The influences of weathering process were evaluated.It was found that the different treatments of moisture and salt solution applications could affect the nature of the weathering products resulting from drying-wetting-freezing.It was also observed that salt solution could effectively alleviate the weathering of pisha-sandstones.Although not all the observations could be explained,it was apparent that simulated environmental factors had both direct and indirect effects on the weathering of rocks. 展开更多
关键词 Drying-wetting-freezing simulation pisha-sandstone WEATHERING wind-water erosioncrisscross region soil erosion China
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Experimental investigation on the relevance of mechanical properties and porosity of sandstone after hydrochemical erosion 被引量:8
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作者 CAI Yan-yan YU Jin +1 位作者 FU Guo-feng LI Hong 《Journal of Mountain Science》 SCIE CSCD 2016年第11期2053-2068,共16页
Under the effect of chemical etching,the macroscopic mechanical properties,mesoscopic structure,mineral content,and porosity of rocks undergo significant changes,which can lead to the geological disasters; thus,an und... Under the effect of chemical etching,the macroscopic mechanical properties,mesoscopic structure,mineral content,and porosity of rocks undergo significant changes,which can lead to the geological disasters; thus,an understanding of changes in the microscopic and macroscopic structure of rocks after chemical etching is crucial.In this study,uniaxial mechanical tests and nuclear magnetic resonance(NMR) spectroscopy were carried out on sandstone samples that had been previously subjected to chemical erosion under different p H values.The aim was to study changes in properties and mechanical characteristics,including deformation and strength characteristics,of the rock,and microscopic pore variation characteristics,and to perform preliminary studies of the chemical corrosion mechanism.Results show that different chemical solutions have a significant influence on the uniaxial compressive strength,the axial strain corresponding to the peak axial stress,elastic modulus,etc.With the passage of time,porosity increases gradually with exposure to different chemical solutions,and exposure to chemical solutions results in large changes in the NMR T2 curve and T2 spectrum area.Sandstone exposed to different chemical solutions exhibits different corrosion mechanisms; the root cause is the change of mineral. 展开更多
关键词 Chemical erosion HYDROCHEMISTRY Mechanical properties Nuclear magnetic resonance POROSITY SANDSTONE
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Effect of nitrite intercalated Mg-Al layered double hydroxides on mortar durability under Cl−and SO_(4)^(2-) coexisting environment 被引量:4
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作者 WANG Xu-hui XU Jin-xia TAN Qi-ping 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第2期546-560,共15页
The aim of this paper is to investigate the effect of nitrite intercalated Mg-Al layered double hydroxides(Mg-Al LDH-NO_(2))on mortar durability under the coexisting environment of Cl−and SO_(4)^(2-).Cl−and SO_(4)^(2-... The aim of this paper is to investigate the effect of nitrite intercalated Mg-Al layered double hydroxides(Mg-Al LDH-NO_(2))on mortar durability under the coexisting environment of Cl−and SO_(4)^(2-).Cl−and SO_(4)^(2-) binding properties of Mg-Al LDH-NO_(2) in simulated concrete pore solutions,Cl−and SO_(4)^(2-) diffusion properties of mortars with Mg-Al LDHNO 2 were examined.The steel corrosion and resistance of mortar against SO_(4)^(2-) attack were also evaluated.The results indicate that Mg-Al LDH-NO_(2) can effectively adsorb the Cl−and SO_(4)^(2-) in simulated concrete pore solution,and inhibit the diffusion of Cl−and SO_(4)^(2-) into cement mortars.The presence of SO_(4)^(2-) can greatly affect the uptake amount of Cl−,and there is a coupled effect of Cl−and SO_(4)^(2-) on their penetration into mortar specimens.In addition,Mg-Al LDH-NO_(2) can greatly upgrade the resistance of mortars against SO_(4)^(2-) attack and well prevent the steel from corrosion.However,Cl−will aggravate the SO_(4)^(2-) attack and SO_(4)^(2-) can initially decrease and then increase the steel corrosion. 展开更多
关键词 layered double hydroxides mortar durability SO_(4)^(2-)attack steel corrosion Cl−and SO_(4)^(2-)coexisting environment
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Invading track of chloride ions in cemented-based materials
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作者 马昆林 谢友均 +1 位作者 龙广成 吴克刚 《Journal of Central South University》 SCIE EI CAS 2010年第2期263-268,共6页
Invading track of chloride ions and chloride ion distribution rule in cement-based materials were investigated by partially soaking in 3.5% (mass fraction) NaCl solution and fully immerging in 3.5% and 5.0% (mass f... Invading track of chloride ions and chloride ion distribution rule in cement-based materials were investigated by partially soaking in 3.5% (mass fraction) NaCl solution and fully immerging in 3.5% and 5.0% (mass fraction) NaC1 solution, respectively, and relevant invading mechanisms were discussed. Results indicate that under full immerging condition, the invading track of chloride ions in cement mortar is similar to beeline that is vertical to chloride ion invading direction, and chloride ion content decreases rapidly with the increase of chloride ion invading depth. Under partial soaking condition, the invading track of chloride ion in cement mortar is similar to the shape of concave parabola, and chloride ion content decreases slowly along the lengthway direction of cement mortar samples in the distance of 20-80 mm from the bottom. Lots of chloride ions accumulate in cement mortar surface layer under the effect of capillary rise and evaporation and then invade cement mortar by diffusion effect. Under partial soaking condition, cement mortar is distinguished by four areas, i.e., immerging area, wet area, crystallization area and dry area. 展开更多
关键词 CONCRETE chloride ions invading track DURABILITY
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Numerical Simulation of Sand Erosion Phenomena in Rotor/Stator Interaction of Compressor 被引量:8
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作者 Masaya Suzuki Kazuaki Inaba Makoto Yamamoto 《Journal of Thermal Science》 SCIE EI CAS CSCD 2008年第2期125-133,共9页
Sand erosion is a phenomenon where solid particles impinging to a wall cause serious mechanical damages to the wall surface. This phenomenon is a typical gas-particle two-phase turbulent flow and a multi-physics probl... Sand erosion is a phenomenon where solid particles impinging to a wall cause serious mechanical damages to the wall surface. This phenomenon is a typical gas-particle two-phase turbulent flow and a multi-physics problem where the flow field, particle trajectory and wall deformation interact with each other. On the other hand, aircraft engines operating in a particulate environment are subjected to the performance and lifetime deterioration due to sand erosion. Especially, the compressor of the aircraft engines is severely damaged. The flow fields of the compressor have strongly three dimensional and unsteady natures. In order to estimate the deterioration due to sand erosion, the sand erosion simulation for a compressor is required under the consideration of the rotor-stator interaction. In the present study, we apply our three dimensional sand erosion prediction code to a single stage axial flow compressor. We numerically investigate the change of the flow field, the particle trajectories, and the eroded wall shape in the compressor, to clarify the effects of sand erosion in the compressor. 展开更多
关键词 sand erosion axial compressor rotor/stator interaction computational fluid dynamics
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