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王志丰老师论文
编辑:  文章来源:  发布时间:2023-02-08  阅读次数:931

[1]王志丰,项庆明,陈德云,谢永利.单管旋喷工法成桩半径实用计算方法[J].长安大学学报(自然科学版),2017,37(04):92-97.

[2]王志丰,沈水龙.单根水平旋喷桩施工引起周围土体变形的实用计算方法研究[J].工程力学,2017,34(05):78-83+104.

[3]王志丰,王亚琼,谢永利.单根水平旋喷桩施工引起地表隆起变形规律研究[J].中国公路学报,2016,29(07):117-123.

[4]王志丰,王亚琼,谢永利.水泥搅拌桩施工引起深层土体水平位移分析[J].建筑科学与工程学报,2016,33(04):90-96.

[5]王志丰,沈水龙,谢永利.水平旋喷桩施工引起周围土体变形分析[J].岩土力学,2016,37(04):1083-1088.

[6]王志丰,王亚琼,谢永利.水平旋喷成桩引起超静孔隙水压力研究[J].西安科技大学学报,2016,36(02):207-212.

[7]王志丰,沈水龙,许烨霜.基于圆形断面自由紊动射流理论的旋喷桩直径计算方法[J].岩土工程学报,2012,34(10):1957-1960.

[8]王志丰,沈水龙,彭少杰,陈立生,杨继范.水平双液旋喷施工对周围环境的影响[J].岩土工程学报,2010,32(S2):513-516.

[9]郭昊天,王志丰,王亚琼.基于有限元强度折减法的路堑高边坡稳定性分析[J].公路,2019,64(11):27-32.

[10]韩立志,王志丰.二重管旋喷工法成桩直径实用计算方法[J].中国公路学报,2019,32(03):128-134.

[11]李杰,陈龙龙,王志丰.路堑边坡扩建开挖过程中的变形分析[J].建筑科学与工程学报,2019,36(05):89-96.

[12]薛振年,陈国龙,孔维康,王志丰,张仲.旋喷桩加固黄土隧道基底及仰拱数值模拟[J].西安科技大学学报,2018,38(04):577-584.

[13]王亚琼,杨明,王志丰.寒区隧道局部渗漏水冻害处治的产热集水装置及应用[J].现代隧道技术,2018,55(04):204-209.

[14]王亚琼,张雷,王志丰,孙铁军.在役隧道衬砌渗漏水引排技术[J].现代隧道技术,2019,56(02):24-29.

[15]曾智,沈水龙,王志丰,许烨霜.上海水泥固化黏土的强度与硬度相关性研究[J].地下空间与工程学报,2014,10(02):311-314.

[16]杨武策,彭兴彬,王亚琼,王志丰.公路隧道新型防排水分区方法研究[J].公路,2020,65(09):328-333.

[17]苏臣宏,安楠楠,王志丰.公路隧道喷射混凝土套拱加固结构力学特性[J].建筑科学与工程学报,2020,37(05):203-213.

[18]杨瑞鹏,王亚琼,高启栋,周海孝,王志丰,任锐.基于厚度检测的运营隧道二次衬砌安全评价研究[J].公路,2021,66(06):378-385.

[19]龚林金,任锐,王亚琼,王志丰,杨瑞鹏.隧道斜穿不同倾角断层破碎带围岩变形特征分析[J].公路,2021,66(07):313-319.

[20]刘中书,陈立斌,杨大渭,侯小波,李春林,王军,陈凯,王志丰.基于三维技术的输电线路精细化施工管控系统的设计与实现[J].湘潭大学学报(自然科学版),2021,43(06):81-92.

[21]王亚琼,杨强,潘红伟,高启栋,张士朝,王志丰.基于3DEC模拟的高地应力水平层状隧道围岩变形破坏特征分析[J/OL].现代隧道技术:1-11[2022-08-21].



[1]Zhi-Feng Wang, Wen-Chieh Cheng. Predicting jet-grout column diameter to mitigate the environmental impact using an artificial intelligence algorithm[J], Science Direct,
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[2] Wang Z F ,  Peng X B ,  Liu Y , et al. Evaluation of Ground Displacements Caused by Installing Jet Grouted Columns Using Machine Learning Methods[J]. Advances in Civil Engineering, 2020, 2020.

[3] Wang Z F ,  Shen S L ,  Modoni G , et al. Excess pore water pressure caused by the installation of jet grouting columns in clay[J]. Computers and Geotechnics, 2020, 125(12):103667.

[4] Wang Z F ,  Shen S L ,  Modoni G . Enhancing discharge of spoil to mitigate disturbance induced by horizontal jet grouting in clayey soil: Theoretical model and application[J]. Computers and Geotechnics, 2019, 111(JUL.):222-228.

[5] Wang Z F ,  Cheng W C ,  Wang Y Q . Investigation into geohazards during urbanization process of Xi'an, China[J]. Natural Hazards, 2018.

[6] Wang Z F ,  Shen J S ,  Cheng W C . Simple method to predict ground displacements caused by installing horizontal jet-grouting columns[J]. Mathematical Problems in Engineering,2018,(2018-1-30), 2018, 2018(PT.2):1897394.1-1897394.11.

[7]Wang, Z. F. and Cheng, W. C. (2020). Predicting jet-grout column diameter to mitigate the environmental impact using an artificial intelligence algorithm. Underground Space, published online.

[8] Wang Z F ,  Bian X ,  Wang Y Q . Numerical approach to predict ground displacement caused by installing a horizontal jet grout column[J]. Marine Georesources & Geotechnology, 2016:1-8.

[9] Wang Z F ,  Cheng W C ,  Wang Y Q . Quantitative Evaluation of Ground Movements Caused by Grouting during Shield Tunnelling in Clay[J]. Advances in Civil Engineering, 2019, 2019(16).

[10]Wang, Z. F. and Cheng, W. C. (2020). Predicting jet-grout column diameter to mitigate the environmental impact using an artificial intelligence algorithm. Underground Space, published online.

[11] Wang Y Q , Wang Z F ,  Cheng W C . A review on land subsidence caused by groundwater withdrawal in Xi'an, China[J]. Bulletin of Engineering Geology & the Environment, 2018.

[12] Wang Y Q ,  Ma C B , Wang Z F . Prediction of Landslide Position of Loose Rock Mass at Mountain Tunnel Exit[J]. Advances in Civil Engineering, 2019, 2019(1):1-9.

[13] Estimation of lateral displacement induced by jet grouting in clayey soils. Géotechnique, 2017, 67(7): 621-630. (SCI)

[14] Shen, S.L., Wang, Z.F., and Cheng, W.C. Estimation of lateral displacement induced by jet grouting in clayey soils. Géotechnique, 2017, 67(7): 621-630. (SCI)

[15]Wang, Z.F., Shen, S.L., Cheng, W.C., and Xu, Y.S. Ground fissures in Xi'an and measures to prevent damage to the Metro tunnel system due to geohazards. Environmental Earth Sciences, 2016, 75:511. (SCI)

[16] Wang, Z.F., Shen, S.L., Yin, Z.Y., and Xu, Y.S. Rapid field evaluation of the strength of cement-stabilized clayey soil. Bulletin of Engineering Geology and the Environment, 2015, 74(4): 991-999. (SCI)

[17]Wang, Z.F., Shen, S.L., Ho, C.E., and Xu, Y.S. Jet grouting for mitigation of installation disturbance.Proceedings of the ICE-Geotechnical Engineering, 2014, 167(6): 526-536.(SCI)

[18] Wang, Z.F., Shen, S.L.,Ho, C.E., and Kim, Y.H. Investigation of field installation effects of horizontal Twin-Jet grouting in Shanghai soft soil deposits, Canadian Geotechnical Journal,2013, 50(3): 288-297. (SCI

[19] Shen, S.L., Wang, Z.F., Yang, J., and Ho, C.E. Generalized approach for prediction of jet grout column diameter, Journal of Geotechnical and Geoenvironmental Engineering, ASCE, 2013, 139(12): 2060-2069. (SCI)

[20] Shen, S.L., Wang, Z.F., Sun, W.J., Wang, L.B., and Horpibulsuk, S. A field trial of horizontal jet grouting with composite-pipe method in soft deposit of Shanghai, Tunneling and Underground Space Technology, 2013, 35: 142-151.(SCI)

[21] Shen, S.L., Wang, Z.F., Horpibulsuk, S, and Kim, Y.H. Jet-Grouting with a newly developed technology: Twin-Jet Method, Engineering Geology, 2013, 152(1): 87-95. (SCI)

[22]Wang, Z.F., Shen, S.L., Ho, C.E., and Kim, Y.H. Jet grouting practice: an overview, Geotechnical Engineering Journal of the SEAGS & AGSSEA, 2013, 44(4): 88-96. (EI)

[23]Wang, Z.F., Shen, S.L., and Yang, J. Estimation of the diameter of jet-grouted column based on turbulent kinematic flow theory.In: Grouting and Deep Mixing 2012, Geotechnical Special Publication No. 228, 2012, 2044-2051. (EI)

[24] Wang, Z.F., Xu, Y.S., and Shen, S.L. Relationship between strength and hardness of cemented-clay soil in Shanghai. In: New Advances in Geotechnical Engineering, 2013, 339-341. (EI)

[25] Shen, S.L, Wang, Z.F., and Ho, C.E. Current state of the art in jet grouting for stabilizing soft soil. GeoShanghai 2014, 107-116. (EI)

[26] Zhi-Feng Wang, Xing-Bin Peng, Yong Liu, Wen-Chieh Cheng, Ya-Qiong Wang,and Chao-Jun Wu.  Evaluation of Ground Displacements Caused by Installing Jet Grouted Columns Using Machine Learning Methods[J], Advances in Civil Engineering, 2020.

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