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文献清单:“水泥混凝土工程”方向 (二) | MDPI Geotechnics |
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期刊名:Geotechnics
期刊主页:https://www.mdpi.com/journal/geotechnics
还在为筛选文献而发愁?别急!为了帮助您更好地了解这一领域的最新进展,我们精心筛选了一系列高质量文献,涵盖水泥混凝土工程应用的多个方面。我们为您精选了15篇“水泥混凝土工程应用”领域的文献,全部来自世界各国顶尖机构,希望这些文献能为您提供新思路。快来看看吧!
1.
英文标题:
Statistical and Predictive Analyses of the Strength Development of a Cement-Treated Clayey Soil
中文标题:
水泥改性粘土强度发展的统计与预测分析
文章链接:http://www.mdpi.com/2673-7094/3/2/26
MDPI引用格式:
Abdallah, A.; Russo, G.; Cuisinier, O. Statistical and Predictive Analyses of the Strength Development of a Cement-Treated Clayey Soil. Geotechnics 2023, 3, 465-479.
2.
英文标题
Microstructure and Strength Parameters of Cement-Stabilized Loess
中文标题
水泥稳定黄土的微观结构与强度参数
文章链接:https://www.mdpi.com/2673-7094/3/2/10
MDPI引用格式
Axel, M.; Li, X.; Wen, F.; An, M.-X. Microstructure and Strength Parameters of Cement-Stabilized Loess. Geotechnics 2023, 3, 161-178.
3.
英文标题
Five-Year Performance Evaluation of Geogrid Reinforcement in Low-Volume Unpaved Roads Using Dynamic Cone Penetrometer, Plate Load Test and Roadway Sensing
中文标题
使用动态锥体触探仪、板荷载试验和道路传感对低容量非铺装道路中土工格栅加固的五年性能评估
文章链接:https://www.mdpi.com/2673-7094/3/2/18
MDPI引用格式
Ho, C.-H.; DeGeyter, J.; Zhang, D. Five-Year Performance Evaluation of Geogrid Reinforcement in Low-Volume Unpaved Roads Using Dynamic Cone Penetrometer, Plate Load Test and Roadway Sensing. Geotechnics 2023, 3, 306-319.
4.
英文标题
A Comparative Study of Embedded Wall Displacements Using Small-Strain Hardening Soil Model
中文标题
小应变硬化土模型对嵌固墙位移的比较研究
文章链接:https://www.mdpi.com/2673-7094/4/1/16
MDPI引用格式
Eilat, T.; Mitelman, A.; McQuillan, A.; Elmo, D. A Comparative Study of Embedded Wall Displacements Using Small-Strain Hardening Soil Model. Geotechnics 2024, 4, 309-321.
5.
英文标题
A Review of Physicochemical Stabilization for Improved Engineering Properties of Clays
中文标题
物理化学稳定化对改善粘土工程性能的综述
文章链接:https://www.mdpi.com/2673-7094/3/3/41
MDPI引用格式
Bukhary, A.; Azam, S. A Review of Physicochemical Stabilization for Improved Engineering Properties of Clays. Geotechnics 2023, 3, 744-759.
6.
英文标题
Increased Microbially Induced Calcium Carbonate Precipitation (MICP) Efficiency in Multiple Treatment Sand Biocementation Processes by Augmentation of Cementation Medium with Ammonium Chloride
中文标题
通过在胶结介质中添加氯化铵来提高多重处理砂生物胶结过程中微生物诱导碳酸钙沉淀 (MICP) 的效率
文章链接:https://www.mdpi.com/2673-7094/3/4/57
MDPI引用格式
Spencer, C.A.; Sass, H.; van Paassen, L. Increased Microbially Induced Calcium Carbonate Precipitation (MICP) Efficiency in Multiple Treatment Sand Biocementation Processes by Augmentation of Cementation Medium with Ammonium Chloride. Geotechnics 2023, 3, 1047-1068.
7.
英文标题
Large Displacement Finite Element Modelling of the Screw Driving Sounding Test in Sandy Soil Using the Coupled Eulerian-Lagrangian Method
中文标题
砂土中螺旋驱动测深试验的大位移有限元模拟(耦合欧拉-拉格朗日法)
文章链接:https://www.mdpi.com/2673-7094/2/2/21
MDPI引用格式
Mirjafari, S.Y.; Orense, R.P.; Das, R. Large Displacement Finite Element Modelling of the Screw Driving Sounding Test in Sandy Soil Using the Coupled Eulerian-Lagrangian Method. Geotechnics 2022, 2, 441-456.
8.
英文标题
Simultaneous Biocementation and Compaction of a Soil to Avoid the Breakage of Cementitious Structures during the Execution of Earthwork Constructions
中文标题
同时进行生物胶结和土壤压实,以避免土方施工期间水泥结构破裂
文章链接:https://www.mdpi.com/2673-7094/3/2/14
MDPI引用格式
Hernández, L.M.; Garzón, E.G.; Sánchez-Soto, P.J.; Morales, E.R. Simultaneous Biocementation and Compaction of a Soil to Avoid the Breakage of Cementitious Structures during the Execution of Earthwork Constructions. Geotechnics 2023, 3, 224-253.
9.
英文标题
3D Numerical Modeling of Geosynthetics for Soil Reinforcement: A Bibliometric Analysis and Literature Review
中文标题
土工合成材料加固土工材料的三维数值模拟:文献计量分析与文献综述
文章链接:https://www.mdpi.com/2673-7094/4/2/36
MDPI引用格式
Paiva, L.; Pinho-Lopes, M.; Paula, A.M.; Valente, R. 3D Numerical Modeling of Geosynthetics for Soil Reinforcement: A Bibliometric Analysis and Literature Review. Geotechnics 2024, 4, 673-692.
10.
英文标题
Development of Soil Moisture Content and Soil Matric Suction Model Based on Field Instrumentation and Electrical Resistivity Imaging (ERI) for Highway Slopes Constructed on High Expansive Clay Soil
中文标题
基于现场仪器和电阻率成像(ERI)的土壤水分含量和土壤基质吸力模型的开发,适用于高膨胀粘土上的公路边坡
文章链接:https://www.mdpi.com/2673-7094/2/3/33
MDPI引用格式
Nobahar, M.; Salunke, R.; Khan, M.S.; Amini, F. Development of Soil Moisture Content and Soil Matric Suction Model Based on Field Instrumentation and Electrical Resistivity Imaging (ERI) for Highway Slopes Constructed on High Expansive Clay Soil. Geotechnics 2022, 2, 671-705.
11.
英文标题
Stress–Strain–Time Description and Analysis of Frozen–Thawed Silty Clay under Low Stress Level
中文标题
低应力水平下冻融粉质粘土应力-应变-时间描述与分析
文章链接:https://www.mdpi.com/2673-7094/2/4/42
MDPI引用格式
Qu, H.; Mu, D.; Ren, Z.; Huang, Z.; Huang, Y.; Tang, A. Stress–Strain–Time Description and Analysis of Frozen–Thawed Silty Clay under Low Stress Level. Geotechnics 2022, 2, 871-907.
12.
英文标题
Spatial Variability during Shrinkage Testing of Expansive Clays
中文标题
膨胀粘土收缩试验过程中的空间变异性
文章链接:https://www.mdpi.com/2673-7094/3/1/4
MDPI引用格式
Paranthaman, R.; Suchan, J.; Azam, S. Spatial Variability during Shrinkage Testing of Expansive Clays. Geotechnics 2023, 3, 43-56.
13.
英文标题
Review of Methods to Solve Desiccation Cracks in Clayey Soils
中文标题
粘土干燥裂缝解决方法综述
文章链接:https://www.mdpi.com/2673-7094/3/3/44
MDPI引用格式
Levatti, H.U. Review of Methods to Solve Desiccation Cracks in Clayey Soils. Geotechnics 2023, 3, 808-828.
14.
英文标题
An Experimental Study on the Effect of Temperature on the Shear Strength Behavior of a Silty Clay Soil
中文标题
温度对粉质粘土抗剪强度特性影响的试验研究
文章链接:https://www.mdpi.com/2673-7094/2/1/11
MDPI引用格式
Hailemariam, H.; Wuttke, F. An Experimental Study on the Effect of Temperature on the Shear Strength Behavior of a Silty Clay Soil. Geotechnics 2022, 2, 250-261.
15.
英文标题
Geogrid-Enhanced Modulus and Stress Distribution in Clay Soil
中文标题
土工格栅增强粘土中的模量和应力分布
文章链接:https://www.mdpi.com/2673-7094/4/1/3
MDPI引用格式
Chen, Q. Geogrid-Enhanced Modulus and Stress Distribution in Clay Soil. Geotechnics 2024, 4, 41-53.
Geotechnics (ISSN 2673-7094)创刊于2021年,最新Impact Factor 1.9,Citescore 3.6,是一个国际化、经同行评审的开放获取期刊。期刊聚焦土壤、岩石和地质环境工程领域,专注于地基工程、结构工程、水文学、地质学、行星科学和物理学等方面的最新研究进展。目前,Geotechnics期刊已被Scopus、ESCI(Web of Science)、DOAJ等数据库收录。
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