王新志
个人信息Personal Information

性别:

职称: 研究员

职务:

学历: 博士研究生

电话:

传真:

电子邮件: xzwang@whrsm.ac.cn

通讯地址:

湖北省武汉市武昌区水果湖街小洪山2号 中国科学院武汉岩土力学研究所

简 历Personal Profile

  • 王新志,博士、研究员、博士生导师。2003年毕业于中国地质大学(武汉)土木工程(岩土)专业,获学士学位; 2008年毕业于中国科学院武汉岩土力学研究所岩土工程专业,获博士学位。20087月至200911月在中交水运规划设计院有限公司工作;200912月起在中国科学院武汉岩土力学研究所岩土力学与工程国家重点实验室工作,任助理研究员,201112月起聘为副研究员、硕士生导师,201912月起聘为青年研究员,202012月聘为研究员。 

    长期从事珊瑚岛礁工程地质与岩土力学特性、吹填地基处理与评价、岛礁地下空间开发等方面的研究。主持完成国家自然科学基金项目2项、中科院战略性先导科技专项(A类)项目子课题1项,海军委托科研项目5项,参加973课题1项、国家科技支撑计划课题1项、科技基础资源调查专项课题1项、国家自然科学基金重点项目1项。在《Engineering Geology》、《Ocean Engineering》、《Bulletin of Engineering Geology and the Environment》、《Rock Mechanics and Rock Engineering》、《岩土力学》等国内外主流期刊上发表学术论文40余篇,其中SCI收录25篇,EI收录18篇,获得发明专利授权11项、实用新型专利授权15项,获湖北省科技进步一等奖1项(排7),中国公路建设行业协会科学技术进步奖特等奖一项(排6)。

  • 研究方向Research Focus
  • 社会任职Social Service
  • 承担科研项目情况Undertaking Research Projects
  • 钙质砂的工程力学特性、珊瑚礁工程地质、吹填地基加固处理与评价、岛礁地下空间开发

  • 担任武汉市岩土工程学会常务理事、《土工基础》编委。

  • (1)国家自然科学基金青年基金项目:珊瑚礁工程特性及其地基变形破坏机理研究,主持,No.511084492012.1-2015.1227万元;

    (2)国家自然科学基金面上项目:南海吹填礁砂颗粒咬合嵌固自密实机理与力学效应,主持,No.415722972016.1-2019.1293.6万元;

    (3)中国科学院战略性先导科技专项(A类) 子课题:岛体地下工程围岩稳态分析,No.XDA130102032016.02-2021.02997万元,主持;

    (4)科技基础资源调查专项课题:中沙群岛珊瑚礁全新世沉积地层调查,2018FY100100032019-2022147万元,参加;

    (5)科技部973课题:南海珊瑚礁的演化趋势与可持续利用对策,2013-2017570万元,参加;

    (6)国家科技基础性工作专项课题:南海中北部地质本底调查,No.2012FY1124002012.04-2016.04650万元,参加;

    (7)国家科技支撑计划课题:南海典型DJ工程地质与水文地质研究,2014-2017350万元,参加;

    (8)海军科研项目:N005机场地基处理效果综合评价,2014.12-2015.1297.7万元,主持

    (9)国家基金重点项目:珊瑚礁工程地质评价及其工程力学效应的分带研究,No.41330642330万元,参加;

    (10)中国科学院重点部署项目:N002岛吹填陆域淡水调查与监测,2015-201690万元,参加;

    (11)南水北调中线渠首分局填方渠堤裂缝处理及施工技术研究,2020-2022, 60万元,主持

  • 代表论著Representative Treatises
  • 获奖及荣誉Awards and Honors
  • [1] Dongsheng Wen, Xinzhi Wang*, Haozhen Ding, Zhibing Fu. Estimation of Crack Initiation Stress Based on Axial Crack Strain Expansion rate. Rock Mechanics and Rock Engineering.  https://doi.org/10.1007/s00603-022-03113-1

    [2] Xinzhi Wang*, Haozhen Ding, Dongsheng Wen, Xing Wang. Vibroflotation method to improve silt interlayers of dredged coral sand ground–a case study. Bulletin of Engineering Geology and the Environment (2022) 81:472. https://doi.org/10.1007/s10064-022-02975-7

    [3] Xinzhi WangXing Wang*Ding Haozhen, Wen Dongsheng, Jian-Hua Shen, Shi-Zhan Lv. Foundation filling performance of marine deposits on coral reefs in the South China Sea. Bulletin of Engineering Geology and the Environment. Applied Ocean Research. 129 (2022) 103386. https://doi.org/10.1016/j.apor.2022.103386.

    [4] Xinzhi Wang*, Haozhen Ding, Qingshan Meng, Houzhen Wei, Yang Wu, Yong Zhang.Engineering characteristics of coral reef and site assessment of hydraulic reclamation in the South China Sea. Construction and Building Materials, 300, 2021, https://doi.org/10.1016/j.conbuildmat.2021.124263.

    [5] Wang, XZ*, Shan, HG, Wu, Y, Meng, QS and Zhu, CQ. Factors Affecting Particle Breakage of Calcareous Soil Retrieved from South China Sea. Geomechanics and Engineering. Vol.22, (2),173-185, 2020.

    [6] Wang, XZ*, Weng, YL, Wei, HZ, Meng, QS, & Hu, MJ. (2019). Particle obstruction and crushing of dredged calcareous soil in the Nansha Islands, South China Sea. Engineering Geology, 261.

    [7] Wang, XZ; Jiao, YY; Wang, R; Hu, MJ; Meng, QS; Tan, FY. Engineering characteristics of the Calcareous Sand in Nansha Islands, South China Sea. Engineering Geology. 201112040–47.

    [8] Xin-Zhi Wang*, Feng-Yi Tan, Ren Wang, Yu-Yong Jiao, Qing-Shan Meng. A new apparatus for testing the bearing capacity of calcareous sand in laboratory. Marine Georesources and Geotechnology. 201432:379–386.

    [9] Wang, X.-Z., Wang, X., Jin, Z.-C., Zhu, C.-Q., Wang, R., & Meng, Q. (2017). Investigation of engineering characteristics of calcareous soils from fringing reef. Ocean Engineering, 134, 77–86. 

    [10] Xin-Zhi Wang*Xing Wang, Zong-Chuan Jin, Qing-Shan Meng, Chang-Qi Zhu, Ren Wang. Shear characteristics of calcareous gravelly soil.  Bulletin of Engineering Geology and the Environment, 76(2),561-573,  2017.

    [11] Xin-Zhi Wang*, Wang XingChen, Jian-wenWang RenHu Ming-jianMeng Qing-shan. Experimental Study on Permeability Characteristics of Calcareous Soil. Bulletin of Engineering Geology and the Environment, 774):1753-17622018.

    [12] Wang, X., Wang, X.-Z*., Zhu, C.-Q., & Meng, Q.-S. (2018). Shear tests of interfaces between calcareous sand and steel. Marine Georesources & Geotechnology, 2019, 37(9):1095-1104.

    [13] 王新志*,汪稔,杨春和,江浩,谭峰屹.盐岩渗透性影响因素研究综述. 岩土力学,2007, 26 Supp.1,2678-2686.EI收录)

    [14] 王新志*,汪稔,孟庆山,刘晓鹏. 钙质砂室内载荷试验研究。岩土力学, 2009301):148-156.EI收录)

    [15] 王新志*,汪稔,孟庆山,陈剑文.南沙群岛珊瑚礁礁灰岩力学特性研究。岩石力学与工程学报20082711:2221-2226.EI收录)

    [16] 王新志*王星,翁贻令,吕士展,阎钶,朱长歧. 钙质砂的干密度特征及其试验方法研究[J]. 岩土力学,2016,37(S2):316-322.EI收录)

    [17] 王新志*,王星,刘海峰,孟庆山,朱长歧. 珊瑚礁地基工程特性现场试验研究[J]. 岩土力学,2017,38(07):2065-2070+2079. EI收录)

    [18] 王新志*,王星,胡明鉴,朱长歧,孟庆山,汪稔. 吹填人工岛地基钙质粉土夹层的渗透特性研究[J]. 岩土力学,2017,38(11):3127-3135.EI收录)

    [19] 王新志*, 谌民, 魏厚振, 孟庆山, 余克服. 辆荷载作用下钙质砂路基的动态响应试验研究[J]. 岩土力学,2018,39(11):4093-4101. EI收录)

    [20] 王新志*,翁贻令,王星,陈伟俊.钙质土颗粒咬合作用机制[J]. 岩土力学,2018,39(09):3113-3120.EI收录)

    [21] 雷学文,丁豪,王新志*,沈建华,孟庆山.钙质粉土的固结特性研究[J].岩土力学,2021,42(04):909-920. EI收录)

    [22] 钱琨,王新志*陈剑文, 刘鹏君. 南海岛礁吹填钙质砂渗透特性试验研究[J]. 岩土力学,2017,38(06):1557-1564+1572. EI收录)

    [23] 谌民,张涛,单华刚,王新志*,孟庆山,余克服.钙质砂压缩波速与物理性质参数关系研究[J].岩土力学, 2019(06):1-9.EI收录)

    [24] Wang X., H.G. Shan, X.Z. Wang*, and C.Q. Zhu. Strength Characteristics of Reef Limestone for Different Cementation Types. Geotechnical and Geological Engineering. 2020(38)79–89. (EI收录)

    [25] 徐学勇,汪稔,王新志, 李炜. 饱和钙质砂爆炸响应动力特性试验研究. 岩土力学,20123310):2953-2959.EI收录)

    [26] 刘景儒,王其涵,王建平,王新志. 三亚海岸珊瑚礁地层成因演化与工程地质分区.岩土力学, 2014S1,334-340. EI收录)

    [27] Tan, F. Y., & Wang, X. Z. Numerical Analysis for Bearing Performance of Flexible Piles Composite Foundation Influenced by Modulus’ Changes. Advanced Materials Research, 2011, 261-263, 1694–1698. EI收录)

    [28] 胡明鉴,崔翔, 王新志,刘海峰, 杜韦.细颗粒对钙质砂渗透性的影响试验研究[J].岩土力学, 2019,40(08): 2925-2930.

    [29] Wang X, Liu JQ*, Cui J, Wang XZ, Shen JH, Zhu CQ. Particle breakage characteristics of a foundation filling material on island-reefs in the South China Sea. Construction and building materials. 2021, 306: 124690. DOI:10.1016/j.conbuildmat.2021.124690. (JCR1)

    [30] Wang X, Shan Y*, Cui J, Zhong Y, Shen JH, Wang XZ, Zhu CQ. A stress-dilatancy equation for the foundation filling material of island-reefs in the South China Sea. Construction and building materials. (JCR1)

    [31] Wang X, Cui J, Zhu CQ, Wu Y*, Wang XZ. Experimental study of the mechanical behavior of calcareous sand under repeated loading-unloading. Bulletin of Engineering Geology and the Environment. 2021, 80(4): 3097–3113. DOI:10.1007/s10064-021-02119-3. (JCR1)

    [32] Wang X, Wu YX, Lu Y*, Cui J, Wang XZ, Zhu CQ. Strength and dilatancy of coral sand in the South China Sea. Bulletin of Engineering Geology and the Environment. 2021, 80 (10): 8279–8299. DOI: 10.1007/s10064-021-02348-6. (JCR1)

    [33] Wang X, Cui J, Wu Y*, Zhu CQ, Wang XZ. Mechanical properties of calcareous silts in a hydraulic fill island-reef. Marine Georesources & Geotechnology. 2020, 39(1): 114. DOI:10.1080/1064119X.2020.1748775. (JCR2, 高被引论文)

    [34] Wang X, Wu Y*, Cui J, Zhu CQ, Wang XZ. Shape characteristics of coral sand from South China Sea. Journal of Marine Science and Engineering. 2020, 8(10): 803. DOI:10.3390/jmse8100803. (JCR2)

    [35] Shen JH, Wang X*, Cui J, Wang XZ, Zhu CQ. Study on the shear characteristics of calcareous gravelly sand considering particle breakage. Bulletin of Engineering Geology and the Environment. (JCR1)

    [36] Shen JH, Wang XZ, Wang X*, Yao T, Wei HZ, Zhu CQ. Effect and mechanism of fines content on the shear strength of calcareous sand. Bulletin of Engineering Geology and the Environment. 2021, 80(10): 7899?7919. DOI:10.1007/s10064-021-02398-w. (JCR1)

    [37] Wu Y, Wang X*, Shen JH, Cui J, Zhu CQ, Wang XZ. Experimental study on the impact of water content on the strength parameters of coral gravelly sand. Journal of Marine Science and Engineering. 2020, 8(9): 634. DOI:10.3390/jmse8090634. (JCR2)

    [38] Shen JH, Wang X*, Liu WB, Zhang PY, Zhu CQ, Wang XZ. Experimental study on mesoscopic shear behavior of calcareous sand material with digital imaging approach. Advance in Civil Engineering. 2020, 8881264. DOI:10.1155/2020/8881264. (JCR3)

    [39] Wang X, Wu Y*, Cui J, Zhu CQ, Wang XZ. Laboratory plate loading test on calcareous sands from a hydraulic fill reef island. (submitted to Marine Georesources & Geotechnology)

    [40] Liang-Jie Xu, Xin-zhi Wang, Ren Wang, Chang-qi Zhu & Xiao-peng Liu. Physical and mechanical properties of calcareous soils: A review. Marine Georesources & Geotechnology. 2021, 40 (6) ,  751-766. https://doi.org/10.1080/1064119X.2021.1927270

    [41] Liang-Jie Xu, Ren Wang, Dong-Sheng Xu , Xin-Zhi Wang , Qing-Shan Meng, and Chang-Qi Zhu. Review of Particle Breakage Measurement Methods for Calcareous Sand. Advances in Civil Engineering. 2022, ID 6477197, 13. https://doi.org/10.1155/2022/6477197

  • (1) 湖北省科技进步奖

    奖励名称:碎裂结构岩体稳定性分析方法和控制技术

    奖励等级:一等奖

    获奖年度:2011

    主要完成人:焦玉勇、张强勇、张秀丽、李伟、孟昭君、王浩、王新志、李术才、张国华、王和志、张贵山、吴火珍、张伟、宋亮、林春金。

    (2) 中国公路建设行业协会科学技术进步奖

    奖励名称:珊瑚礁地质超长大直径桩基础设计关键技术及工程应用

    奖励等级:特等奖

    主要完成人:张鸿;张喜刚;张永涛;刘波;游新鹏;王新志;徐东升;杨钊;林树奎;田唯;陈培帅;罗凯;刘海峰;李莎;蔡赫;刘恩龙;姬付全;罗会武;罗英;居炎飞;黄威;邓志强;张瑞元;喻成成;姚翔川

研究方向Research Focus

钙质砂的工程力学特性、珊瑚礁工程地质、吹填地基加固处理与评价、岛礁地下空间开发

社会任职Social Service

担任武汉市岩土工程学会常务理事、《土工基础》编委。

承担科研项目情况Undertaking Research Projects

(1)国家自然科学基金青年基金项目:珊瑚礁工程特性及其地基变形破坏机理研究,主持,No.511084492012.1-2015.1227万元;

(2)国家自然科学基金面上项目:南海吹填礁砂颗粒咬合嵌固自密实机理与力学效应,主持,No.415722972016.1-2019.1293.6万元;

(3)中国科学院战略性先导科技专项(A类) 子课题:岛体地下工程围岩稳态分析,No.XDA130102032016.02-2021.02997万元,主持;

(4)科技基础资源调查专项课题:中沙群岛珊瑚礁全新世沉积地层调查,2018FY100100032019-2022147万元,参加;

(5)科技部973课题:南海珊瑚礁的演化趋势与可持续利用对策,2013-2017570万元,参加;

(6)国家科技基础性工作专项课题:南海中北部地质本底调查,No.2012FY1124002012.04-2016.04650万元,参加;

(7)国家科技支撑计划课题:南海典型DJ工程地质与水文地质研究,2014-2017350万元,参加;

(8)海军科研项目:N005机场地基处理效果综合评价,2014.12-2015.1297.7万元,主持

(9)国家基金重点项目:珊瑚礁工程地质评价及其工程力学效应的分带研究,No.41330642330万元,参加;

(10)中国科学院重点部署项目:N002岛吹填陆域淡水调查与监测,2015-201690万元,参加;

(11)南水北调中线渠首分局填方渠堤裂缝处理及施工技术研究,2020-2022, 60万元,主持

代表论著Representative Treatises

[1] Dongsheng Wen, Xinzhi Wang*, Haozhen Ding, Zhibing Fu. Estimation of Crack Initiation Stress Based on Axial Crack Strain Expansion rate. Rock Mechanics and Rock Engineering.  https://doi.org/10.1007/s00603-022-03113-1

[2] Xinzhi Wang*, Haozhen Ding, Dongsheng Wen, Xing Wang. Vibroflotation method to improve silt interlayers of dredged coral sand ground–a case study. Bulletin of Engineering Geology and the Environment (2022) 81:472. https://doi.org/10.1007/s10064-022-02975-7

[3] Xinzhi WangXing Wang*Ding Haozhen, Wen Dongsheng, Jian-Hua Shen, Shi-Zhan Lv. Foundation filling performance of marine deposits on coral reefs in the South China Sea. Bulletin of Engineering Geology and the Environment. Applied Ocean Research. 129 (2022) 103386. https://doi.org/10.1016/j.apor.2022.103386.

[4] Xinzhi Wang*, Haozhen Ding, Qingshan Meng, Houzhen Wei, Yang Wu, Yong Zhang.Engineering characteristics of coral reef and site assessment of hydraulic reclamation in the South China Sea. Construction and Building Materials, 300, 2021, https://doi.org/10.1016/j.conbuildmat.2021.124263.

[5] Wang, XZ*, Shan, HG, Wu, Y, Meng, QS and Zhu, CQ. Factors Affecting Particle Breakage of Calcareous Soil Retrieved from South China Sea. Geomechanics and Engineering. Vol.22, (2),173-185, 2020.

[6] Wang, XZ*, Weng, YL, Wei, HZ, Meng, QS, & Hu, MJ. (2019). Particle obstruction and crushing of dredged calcareous soil in the Nansha Islands, South China Sea. Engineering Geology, 261.

[7] Wang, XZ; Jiao, YY; Wang, R; Hu, MJ; Meng, QS; Tan, FY. Engineering characteristics of the Calcareous Sand in Nansha Islands, South China Sea. Engineering Geology. 201112040–47.

[8] Xin-Zhi Wang*, Feng-Yi Tan, Ren Wang, Yu-Yong Jiao, Qing-Shan Meng. A new apparatus for testing the bearing capacity of calcareous sand in laboratory. Marine Georesources and Geotechnology. 201432:379–386.

[9] Wang, X.-Z., Wang, X., Jin, Z.-C., Zhu, C.-Q., Wang, R., & Meng, Q. (2017). Investigation of engineering characteristics of calcareous soils from fringing reef. Ocean Engineering, 134, 77–86. 

[10] Xin-Zhi Wang*Xing Wang, Zong-Chuan Jin, Qing-Shan Meng, Chang-Qi Zhu, Ren Wang. Shear characteristics of calcareous gravelly soil.  Bulletin of Engineering Geology and the Environment, 76(2),561-573,  2017.

[11] Xin-Zhi Wang*, Wang XingChen, Jian-wenWang RenHu Ming-jianMeng Qing-shan. Experimental Study on Permeability Characteristics of Calcareous Soil. Bulletin of Engineering Geology and the Environment, 774):1753-17622018.

[12] Wang, X., Wang, X.-Z*., Zhu, C.-Q., & Meng, Q.-S. (2018). Shear tests of interfaces between calcareous sand and steel. Marine Georesources & Geotechnology, 2019, 37(9):1095-1104.

[13] 王新志*,汪稔,杨春和,江浩,谭峰屹.盐岩渗透性影响因素研究综述. 岩土力学,2007, 26 Supp.1,2678-2686.EI收录)

[14] 王新志*,汪稔,孟庆山,刘晓鹏. 钙质砂室内载荷试验研究。岩土力学, 2009301):148-156.EI收录)

[15] 王新志*,汪稔,孟庆山,陈剑文.南沙群岛珊瑚礁礁灰岩力学特性研究。岩石力学与工程学报20082711:2221-2226.EI收录)

[16] 王新志*王星,翁贻令,吕士展,阎钶,朱长歧. 钙质砂的干密度特征及其试验方法研究[J]. 岩土力学,2016,37(S2):316-322.EI收录)

[17] 王新志*,王星,刘海峰,孟庆山,朱长歧. 珊瑚礁地基工程特性现场试验研究[J]. 岩土力学,2017,38(07):2065-2070+2079. EI收录)

[18] 王新志*,王星,胡明鉴,朱长歧,孟庆山,汪稔. 吹填人工岛地基钙质粉土夹层的渗透特性研究[J]. 岩土力学,2017,38(11):3127-3135.EI收录)

[19] 王新志*, 谌民, 魏厚振, 孟庆山, 余克服. 辆荷载作用下钙质砂路基的动态响应试验研究[J]. 岩土力学,2018,39(11):4093-4101. EI收录)

[20] 王新志*,翁贻令,王星,陈伟俊.钙质土颗粒咬合作用机制[J]. 岩土力学,2018,39(09):3113-3120.EI收录)

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获奖及荣誉Awards and Honors

(1) 湖北省科技进步奖

奖励名称:碎裂结构岩体稳定性分析方法和控制技术

奖励等级:一等奖

获奖年度:2011

主要完成人:焦玉勇、张强勇、张秀丽、李伟、孟昭君、王浩、王新志、李术才、张国华、王和志、张贵山、吴火珍、张伟、宋亮、林春金。

(2) 中国公路建设行业协会科学技术进步奖

奖励名称:珊瑚礁地质超长大直径桩基础设计关键技术及工程应用

奖励等级:特等奖

主要完成人:张鸿;张喜刚;张永涛;刘波;游新鹏;王新志;徐东升;杨钊;林树奎;田唯;陈培帅;罗凯;刘海峰;李莎;蔡赫;刘恩龙;姬付全;罗会武;罗英;居炎飞;黄威;邓志强;张瑞元;喻成成;姚翔川