基本信息
孙翔  男    中国科学院武汉岩土力学研究所
电子邮件: xsun@whrsm.ac.cn
通信地址: 湖北省武汉市武昌区小洪山2号
邮政编码:

招生信息

   
招生专业
080104-工程力学
081401-岩土工程
招生方向
岩土力学,海洋岩土工程,能源岩土工程
数值计算方法

工作经历

   
工作简历
2022-10~现在, 中国科学院武汉岩土力学研究所, 副研究员
2020-12~2022-10,大连理工大学, 副教授
2017-09~2020-09,University of California, Berkeley, 博士后
2017-04~2017-09,大连理工大学, 博士后

专利与奖励

   
奖励信息
(1) 日内瓦国际发明金奖, 其他, 2023
专利成果
[1] 孙翔, 程凡宝, 赵奇缘, 宋永臣, 李洋辉, 吴鹏, 陈之祥, 刘卫国. 一种水合物分解过程等效比热实时无损计算的装置及方法. CN: CN116539661A, 2023-08-04.
[2] 孙翔, 程凡宝, 刘煊吉, 宋永臣, 李洋辉, 吴鹏, 陈之祥, 刘卫国. 一种研究水合物开采过程中井筒失稳与气体泄漏装置及方法. CN: CN116517529A, 2023-08-01.
[3] 孙翔, 程凡宝, 宋永臣, 李洋辉, 吴鹏, 陈之祥, 刘卫国. 一种利用导热系数反演沉积物内水合物饱和度的方法. CN: CN116519739A, 2023-08-01.
[4] 孙翔, 宋永臣, 程凡宝, 李洋辉, 吴鹏, 刘卫国, 赵佳飞, 张伦祥, 陈兵兵, 蒋兰兰, 杨明军, 刘瑜, 凌铮, 陈聪. 一种监测气体水合物相变过程多物理场响应的可视化低温高压反应釜. CN: CN115090216B, 2023-07-25.
[5] 陈之祥, 华龙飞, 万勇, 薛强, 何星星, 董志伟, 孙翔, 欧治松. 土体驱替-相变微流控模拟的荧光可视装置及方法. CN: CN116465807A, 2023-07-21.
[6] 魏厚振, 辛力, 薛强, 孙翔, 马晓龙. 含天然气水合土的界面力学参数测试装置及测试方法. CN: CN116448594A, 2023-07-18.
[7] 宋永臣, 孙汇莲, 张伦祥, 赵佳飞, 孙灵杰, 凌铮, 杨磊, 刘瑜, 刘卫国, 李洋辉, 孙翔, 陈聪, 王大勇. 一种基于水合物法常压连续污泥调质系统及方法. CN: CN115417577B, 2023-07-18.
[8] 宋永臣, 李洋辉, 吴鹏, 孙翔, 刘卫国, 赵佳飞, 杨明军, 杨磊, 凌铮. 一种基于CT图像的胶结型水合物沉积物三维建模方法. CN: CN111855712B, 2023-04-11.
[9] 杨磊, 石康吉, 赵佳飞, 宋永臣, 张伦祥, 刘瑜, 李洋辉, 杨明军, 刘卫国, 张毅, 王大勇, 凌峥, 蒋兰兰, 孙翔, 于涛. 基于热力学驱动力优化的天然气水合物开采装置及方法. CN: CN115680573A, 2023-02-03.
[10] 万勇, 刘立洋, 陈之祥, 孙翔, 于化月, 冯佃芝, 薛强. 一种修正三维倾角误差的土样变形计算方法. CN: CN115435701A, 2022-12-06.
[11] 宋永臣, 孙汇莲, 张伦祥, 赵佳飞, 孙灵杰, 凌铮, 杨磊, 刘瑜, 刘卫国, 李洋辉, 孙翔, 陈聪, 王大勇. 一种基于水合物法常压连续污泥调质系统及方法. CN: CN115417577A, 2022-12-02.
[12] 薛强, 于化月, 陈之祥, 万勇, 刘立洋, 陈新, 孙翔, 华龙飞. 一种修正土样离心变形的污泥土基质吸力测试装置及方法. CN: CN115165653A, 2022-10-11.
[13] 孙翔, 宋永臣, 程凡宝, 李洋辉, 吴鹏, 刘卫国, 赵佳飞, 张伦祥, 陈冰冰, 蒋兰兰, 杨明军, 刘瑜, 凌铮, 陈聪. 一种监测气体水合物相变过程多物理场响应的可视化低温高压反应釜. CN: CN115090216A, 2022-09-23.
[14] 宋永臣, 孙汇莲, 张伦祥, 赵佳飞, 孙灵杰, 凌铮, 杨磊, 刘瑜, 刘卫国, 李洋辉, 孙翔, 蒋兰兰. 一种基于水合物水蒸气吸附法的污水处理方法及装置. CN: CN114835184A, 2022-08-02.
[15] 宋永臣, 蒋兰兰, 成祖丞, 刘颖颖, 张毅, 赵佳飞, 王大勇, 孙翔. 一种水合物法分离封存混合气中CO2耦合蓄冷的装置. CN: CN114806660A, 2022-07-29.
[16] 赵佳飞, 闫广涵, 宋永臣, 刘瑜, 梁义强, 孙明瑞, 孙翔, 杨磊, 张伦祥, 赵红柳, 张赵达, 李帅. 一种基于GD型杂化极小曲面扰动结构的换热器. CN: CN114623705A, 2022-06-14.
[17] 赵佳飞, 贾雨昕, 杨磊, 刘延振, 张伦祥, 宋永臣, 刘卫国, 李洋辉, 刘瑜, 杨明军, 凌铮, 王大勇, 孙翔, 于涛. 一种环境友好的天然气水合物抑制剂及应用. CN: CN114276793A, 2022-04-05.
[18] 宋永臣, 李洋辉, 刘涛, 刘瑜, 孙翔, 刘卫国, 赵佳飞, 杨明军, 杨磊, 凌铮, 张伦祥. 一种适用于鼓式离心机的天然气水合物开采模拟装置. CN: CN114215510A, 2022-03-22.
[19] 宋永臣, 赵佳飞, 刘瑜, 赵杨, 杨磊, 张伦祥, 刘卫国, 杨明军, 王大勇, 张毅, 李洋辉, 凌铮, 蒋兰兰, 孙翔, 赵越超. 一种磁性水合物抑制剂、浆料及其制备方法. CN: CN113072922B, 2022-02-22.
[20] 宋永臣, 胡显冰, 张伦祥, 赵佳飞, 董宏生, 王天, 杨磊, 凌铮, 孙翔, 李洋辉, 陈聪, 刘瑜, 刘卫国. 一种利用水合物相变的液相有机混合物分离方法. CN: CN113941173A, 2022-01-18.
[21] 宋永臣, 赵佳飞, 王凡, 张伦祥, 杨磊, 刘卫国, 杨明军, 刘瑜, 王大勇, 张毅, 李洋辉, 凌铮, 蒋兰兰, 孙翔, 赵越超. 一种二氧化碳水合物消防罐车. CN: CN113786574A, 2021-12-14.
[22] 陈聪, 宋永臣, 王喜, 徐昊泼, 刘卫国, 赵佳飞, 刘瑜, 张毅, 秦妍, 蒋兰兰, 凌铮, 孙翔, 张伦祥, 赵越超. 一种用于管道流动安全水合物特性研究及泄露监测的可视化实验装置. CN: CN113686497A, 2021-11-23.
[23] 陈聪, 宋永臣, 赵佳飞, 杨明军, 崔莹莹, 刘卫国, 张毅, 刘瑜, 蒋兰兰, 赵越超, 凌铮, 李洋辉, 孙翔, 王大勇, 李羽白, 杨磊, 张伦祥. 分布式油气运输管道中固体物防控的低能耗动态热管理系统. CN: CN113236976A, 2021-08-10.
[24] 宋永臣, 赵佳飞, 刘瑜, 赵杨, 杨磊, 张伦祥, 刘卫国, 杨明军, 王大勇, 张毅, 李洋辉, 凌铮, 蒋兰兰, 孙翔, 赵越超. 一种磁性水合物抑制剂、浆料及其制备方法. CN: CN113072922A, 2021-07-06.
[25] 陈之祥, 郭晓霞, 邵龙潭, 孙翔, 李洋辉, 王鹏鹏, 牛庚, 田筱剑. 具有制样功能的天然气水合物沉积物产气产水量测定装置及其实施方法. CN: CN110793831B, 2021-06-29.
[26] 宋永臣, 郑嘉男, 杨明军, 董爽, 蒋兰兰, 孙翔, 刘卫国. 一种海洋天然气水合物储层重塑与开采装置. CN: CN112878966A, 2021-06-01.
[27] 陈之祥, 郭晓霞, 邵龙潭, 韩敏, 田筱剑, 王鹏鹏, 孙翔. 一种适用于结构体的奇异三轴试验装置及其实施方法. CN: CN110749496B, 2021-04-16.
[28] 宋永臣, 李洋辉, 吴鹏, 孙翔, 刘卫国, 赵佳飞, 杨明军, 杨磊, 凌铮. 一种基于CT图像的孔隙填充型水合物沉积物三维建模方法. CN: CN111862306A, 2020-10-30.
[29] 宋永臣, 李洋辉, 吴鹏, 孙翔, 刘卫国, 赵佳飞, 杨明军, 杨磊, 凌铮. 一种基于CT图像的胶结型水合物沉积物三维建模方法. CN: CN111855712A, 2020-10-30.
[30] 宋永臣, 骆汀汀, 刘卫国, 李洋辉, 孙翔. 一种海底天然气水合物岩心声波式平面应变仪装置. CN: CN107991164A, 2018-05-04.
[31] 宋永臣, 李洋辉, 孙翔, 刘卫国, 杨明军, 赵佳飞, 刘瑜, 张毅, 王大勇, 赵越超, 蒋兰兰, 凌铮, 罗昊. 一种考虑水合物分解的沉积物多场耦合模型的建模方法. CN: CN107122571A, 2017-09-01.

出版信息

   
发表论文
[1] Yanghui Li, Jiayu Li, Zeshao You, Peng Wu, Yong Qu, An Zhang, Xiang Sun, Yongchen Song. A particle-scale investigation of mechanical behavior of cemented hydrate-bearing sediment using Discrete Element Method. GEOMECHANICS FOR ENERGY AND THE ENVIRONMENT. 2023, 第 7 作者  通讯作者  33: http://dx.doi.org/10.1016/j.gete.2023.100436.
[2] Zhang, Zhixuan, Han, Xu, Wang, Mingda, Wu, Zhengjie, Sun, Xiang, Wu, Shaohua. A hybrid sectional moment projection method for modeling soot particle dynamics in laminar premixed flames. FUEL[J]. 2023, 第 5 作者331: http://dx.doi.org/10.1016/j.fuel.2022.125731.
[3] Cheng, Fanbao, Sun, Xiang, Wu, Peng, Chen, Zhixiang, Yu, Tao, Liu, Weiguo, Ju, Xin, Li, Yanghui. A Fully Coupled Thermo-Hydro-Mechanical-Chemical Model for Methane Hydrate Bearing Sediments Considering the Effect of Ice. JOURNAL OF MARINE SCIENCE AND ENGINEERING[J]. 2023, 第 2 作者  通讯作者  11(4): http://dx.doi.org/10.3390/jmse11040766.
[4] Cheng, Fanbao, Wu, Zhaoran, Sun, Xiang, Shen, Shi, Wu, Peng, Liu, Weiguo, Chen, Bingbing, Liu, Xuanji, Li, Yanghui. Compression-induced dynamic change in effective permeability of hydrate-bearing sediments during hydrate dissociation by depressurization. ENERGY[J]. 2023, 第 3 作者  通讯作者  264: http://dx.doi.org/10.1016/j.energy.2022.126137.
[5] Sun, Xiang, Luo, Hao, Soga, Kenichi. Deformation Coupled Effective Permeability Change in Hydrate-Bearing Sediment during Depressurization. PROCESSES[J]. 2022, 第 1 作者10(11): http://dx.doi.org/10.3390/pr10112210.
[6] Wu, Peng, Li, Yanghui, Wang, Lei, Sun, Xiang, Wu, Dejun, He, Yufa, Li, Qingping, Song, Yongchen. Hydrate-bearing sediment of the South China Sea: Microstructure and mechanical characteristics. ENGINEERING GEOLOGY[J]. 2022, 第 4 作者307: 
[7] Shen, Shi, Li, Yanghui, Sun, Xiang, Wang, Lei, Song, Yongchen. Mechanical properties of methane hydrate-bearing sandy sediments under various temperatures and pore pressures. JOURNAL OF PETROLEUM SCIENCE AND ENGINEERING[J]. 2022, 第 3 作者208: http://dx.doi.org/10.1016/j.petrol.2021.109474.
[8] 孙汇莲, 孙灵杰, 赵杨, 孙翔, 张伦祥. 水合物法处理实际复杂废水及高盐废水. 化工进展[J]. 2022, 第 4 作者41(12): 6672-6679, http://lib.cqvip.com/Qikan/Article/Detail?id=7108609913.
[9] Wu, Peng, Li, Yanghui, Wang, Lei, Sun, Xiang, Wu, Dejun, He, Yufa, Li, Qingping, Song, Yongchen. Hydrate-bearing sediment of the South China Sea: Microstructure and mechanical characteristics. ENGINEERING GEOLOGY[J]. 2022, 第 4 作者307: http://dx.doi.org/10.1016/j.enggeo.2022.106782.
[10] Cheng, Zucheng, Liu, Weiguo, Li, Shaohua, Wang, Sijia, Liu, Yingying, Sun, Xiang, Chen, Cong, Jiang, Lanlan, Song, Yongchen. High-efficiency separation of CO2 from CO2-CH4 gas mixtures via gas hydrates under static conditions. SEPARATION AND PURIFICATION TECHNOLOGY[J]. 2022, 第 6 作者296: 
[11] Luo, Tingting, Han, Tao, Zhang, Tao, Li, Yanghui, Zhao, Xiaodong, Zhang, Chenyi, Sun, Xiang, Song, Yongchen. Deformation behaviors of hydrate-bearing silty sediments during CH4-CO2 replacement. JOURNAL OF PETROLEUM SCIENCE AND ENGINEERING[J]. 2022, 第 7 作者211: http://dx.doi.org/10.1016/j.petrol.2022.110225.
[12] You, Zeshao, Wu, Peng, Sun, Xiang, Liu, Yu, Li, Tao, Li, Yanghui. Effect of Hydrate Distribution on the Mechanical Response of Hydrate-Bearing Sand: Discrete Element Method Simulation. ENERGY & FUELS[J]. 2022, 第 3 作者36(7): 3802-3815, http://dx.doi.org/10.1021/acs.energyfuels.2c00122.
[13] Li, Yanghui, Yang, Shenghua, Wu, Peng, Song, Xiangge, Sun, Xiang. Study of the Physical Characteristics of a Pore-Filling Hydrate Reservoir: Particle Shape Effect. ENERGY & FUELS[J]. 2021, 第 5 作者  通讯作者  35(19): 15502-15512, http://dx.doi.org/10.1021/acs.energyfuels.1c01747.
[14] Liu, Weiguo, Pan, Dedong, Shen, Shi, You, Zeshao, Zhao, Yuechao, Sun, Xiang. Experimental Study on Mechanical Properties of Hydrate-Bearing Sand: The Influence of Sand-Water Mixing Methods. ENERGIES[J]. 2021, 第 6 作者  通讯作者  14(9): https://doaj.org/article/b9efe8e0cc8f41d6b236c700907568c0.
[15] Wang, Lei, Zhao, Jiafei, Sun, Xiang, Wu, Peng, Shen, Shi, Liu, Tao, Li, Yanghui. Comprehensive review of geomechanical constitutive models of gas hydrate-bearing sediments. JOURNAL OF NATURAL GAS SCIENCE AND ENGINEERING. 2021, 第 3 作者88: http://dx.doi.org/10.1016/j.jngse.2020.103755.
[16] Chen, Bingbing, Liu, Zheyuan, Sun, Huiru, Zhao, Guojun, Sun, Xiang, Yang, Mingjun. The synthetic effect of traditional-thermodynamic-factors (temperature, salinity, pressure) and fluid flow on natural gas hydrate recovery behaviors. ENERGY[J]. 2021, 第 5 作者  通讯作者  233: http://dx.doi.org/10.1016/j.energy.2021.121147.
[17] Li, Yanghui, Wang, Lei, Shen, Shi, Liu, Tao, Zhao, Jiafei, Sun, Xiang. Triaxial Tests on Water-Saturated Gas Hydrate-Bearing Fine-Grained Samples of the South China Sea under Different Drainage Conditions. ENERGY & FUELS[J]. 2021, 第 6 作者  通讯作者  35(5): 4118-4126, http://dx.doi.org/10.1021/acs.energyfuels.1c00071.
[18] Sun, Xiang, Soga, Kenichi, Cinar, Alp, Su, Zhenxiang, Chen, Kecheng, Kumar, Krishna, Dobson, Patrick F, Nico, Peter S. An HPC-Based Hydrothermal Finite Element Simulator for Modeling Underground Response to Community-Scale Geothermal Energy Production. 2021, 第 1 作者http://arxiv.org/abs/2103.00081.
[19] Shen, Shi, Sun, Xiang, Wang, Lei, Song, Yongchen, Li, Yanghui. Effect of Temperature on the Mechanical Properties of Hydrate-Bearing Sand under Different Confining Pressures. ENERGY & FUELS[J]. 2021, 第 2 作者  通讯作者  35(5): 4106-4117, http://dx.doi.org/10.1021/acs.energyfuels.1c00052.
[20] Chen, Zherui, Li, Yanghui, Chen, Cong, Sun, Xiang, Liu, Weiguo. Aggregation Behavior of Asphalt on the Natural Gas Hydrate Surface with Different Surfactant Coverages. JOURNAL OF PHYSICAL CHEMISTRY C[J]. 2021, 第 4 作者125(30): 16378-16390, http://dx.doi.org/10.1021/acs.jpcc.1c01747.
[21] Li, Yanghui, Wu, Dejun, Wu, Peng, Song, Yongchen, Sun, Xiang. Mechanical Characteristics of the Hydrate-Bearing Sediments in the South China Sea Using a Multistage Triaxial Loading Test. ENERGY & FUELS[J]. 2021, 第 5 作者  通讯作者  35(5): 4127-4137, http://dx.doi.org/10.1021/acs.energyfuels.1c00118.
[22] Wu, Peng, Li, Yanghui, Wang, Le, Wang, Lei, Sun, Xiang, Liu, Weiguo, Song, Yongchen. Triaxial tests on the overconsolidated methane hydrate-bearing clayey-silty sediments. JOURNAL OF PETROLEUM SCIENCE AND ENGINEERING[J]. 2021, 第 5 作者206: http://dx.doi.org/10.1016/j.petrol.2021.109035.
[23] Li, Yanghui, Wu, Peng, Sun, Xiang, Liu, Weiguo, Song, Yongchen. Mechanical behaviors of hydrate-bearing sediment with different cementation spatial distributions at microscales. ISCIENCE[J]. 2021, 第 3 作者24(5): http://dx.doi.org/10.1016/j.isci.2021.102448.
[24] Wu, Peng, Yang, Shenghua, Song, Xiangge, Sun, Xiang, Li, Yanghui. Influence of grain size distribution on the physical characteristics of cementing hydrate-bearing sediment. ENERGY REPORTS[J]. 2021, 第 4 作者7: 8187-8197, http://dx.doi.org/10.1016/j.egyr.2021.07.014.
[25] Shen, Shi, Li, Yanghui, Sun, Xiang, Wang, Lei, Song, Yongchen. Analysis of the mechanical properties of methane hydrate-bearing sands with various pore pressures and confining pressures. JOURNAL OF NATURAL GAS SCIENCE AND ENGINEERING[J]. 2021, 第 3 作者87: http://dx.doi.org/10.1016/j.jngse.2020.103786.
[26] Wu, Peng, Li, Yanghui, Sun, Xiang, Liu, Weiguo, Song, Yongchen. Mechanical Characteristics of Hydrate-Bearing Sediment: A Review. ENERGY & FUELS. 2021, 第 3 作者35(2): 1041-1057, http://dx.doi.org/10.1021/acs.energyfuels.0c03995.
[27] Zheng, Gang, Xia, Boyang, Zhou, Haizuo, Zhao, Jiapeng, Yu, Xiaoxuan, Sun, Xiang, Du, Juan. Seismic Bearing Capacity of Strip Footings on Ground Reinforced by Stone Columns Using Upper-Bound Solutions. INTERNATIONAL JOURNAL OF GEOMECHANICS[J]. 2020, 第 6 作者20(9): http://dx.doi.org/10.1061/(ASCE)GM.1943-5622.0001794.
[28] Luo, Tingting, Li, Yanghui, Madhusudhan, B N, Sun, Xiang, Song, Yongchen. Deformation behaviors of hydrate-bearing silty sediment induced by depressurization and thermal recovery. APPLIED ENERGY[J]. 2020, 第 4 作者276: http://dx.doi.org/10.1016/j.apenergy.2020.115468.
[29] Cinar Alp, Sun Xiang, Soga Kenichi, Lu Xiaoyu, Nico Peter, Dobson Patrick. A simplified method to evaluate geothermal storage in an aquifer with consideration of heat transfer between aquifer and caprock/baserock. E3S WEB OF CONFERENCES[J]. 2020, 第 2 作者205: https://doaj.org/article/a0be8f67978345919174b16b91aee18d.
[30] Wu, Peng, Li, Yanghui, Liu, Weiguo, Sun, Xiang, Kong, Xianjing, Song, Yongchen. Cementation Failure Behavior of Consolidated Gas Hydrate-Bearing Sand. JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH[J]. 2020, 第 4 作者125(1): https://www.webofscience.com/wos/woscc/full-record/WOS:000530895100042.
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