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彭远胜,男,深圳大学特聘副研究员,2020年6月毕业于广西大学,获工学博士学位。2020年8日至2022年7月为深圳大学土木与交通工程学院博士后(合作导师:陈湘生院士)。主要从事环境岩土工程、固废资源化利用、岩溶地区基坑突水机理及防治等研究工作。为中国岩石力学与工程学会会员,广东省岩土力学与工程学会青年工作委员会委员。主持国家自然科学基金青年科学基金项目1项、国家重点研发子课题1项、深圳市地铁地下车站绿色高效智能建造重点实验室开放基金1项、CZ铁路横向项目1项,参与国家自然科学基金、中国工程院咨询项目等项目13项。发表论文30篇,其中SCI/EI收录24篇,以第一作者或通讯作者发表SCI/EI论文8篇,以二作且导师一作发表SCI/EI论文2篇;获授权发明专利2件,实用新型专利6件;获软件著作权4件;参编标准7部(6部已发布);获教育部科学技术进步一等奖1项。1)作为主要完成人,项目成果“赤泥激发改性及规模化高值路用关键技术研究与应用”经中国公路学会评价总体达到国际领先水平,部分成果已纳入参编的湖南省地方标准《固废复合胶结料轻质路基技术标准》、团体标准《赤泥基胶凝材料》、团体标准《赤泥基轻质土生产与应用技术规程》。2)作为主要完成人,项目成果“深圳岩溶地区地下空间轨道交通建设关键技术”经广东省地质学会评价达到国内领先水平、部分达到国际先进水平,部分成果已纳入参编的深圳市工程建设地方标准《岩溶地区城市轨道交通工程技术标准》。具体如下:
(1)发表论文
[1] Peng, Y.*, Ou, X., Chen, X., Lin, X., & Shen, X. (2022). Utilization of discarded bauxite tailings into eco-friendly foamed mixture lightweight soil. Journal of Cleaner Production, 333, 130167.
[2] Yuansheng Peng; Zhongping Chen; Xiaohui Sun; Yuefu Zhou; Xiaoduo Ou; Properties, Treatment and Resource Utilization of Bauxite Tailings: A Review, Sustainability, 2024, 16. SCIE.
[3] Zhongping Chen; Yongkang Li; Yuefu Zhou; Yuansheng Peng*; Yuehua Duan; Preparation of Red Mud-Electrolytic Manganese Residue Paste: Properties and Environmental Impact, Buildings, 2026, 16(/). SCIE.
[4] Fengling Ji; Yuansheng Peng*; Qingfeng Lv; Wei Li; Jingjing Yu; Pure salt expansion behavior in sulfate saline soil under negative temperature conditions, Cold Regions Science and Technology, 2024, 225. SCIE. 第一标注
[5] Yuansheng Peng; Chengyong Cao; Fengling Ji; Xiangsheng Chen; Water inrush-induced failure during deep excavation for a metro station in karst regions in Shenzhen, China: Cause diagnosis and post-accident restoration, Engineering Failure Analysis, 2024, 162. SCIE.
[6] Peng, Y., Jiang, J., Ou, X., & Qin, J. (2019). Investigating the properties of foamed mixture lightweight soil mixed with bauxite tailings as filler. Advances in Materials Science and Engineering, 2019: 6295348.
[7] Fan, M., Lyu, Z., Peng, Y., Liang, G., Li, Y., & Fan, S. (2024). Improving foamed mixture lightweight soil containing red mud properties by using nano-SiO2. Green Materials, 1-12.
[8] 彭远胜,欧孝夺,姬凤玲. 铝土尾矿泡沫轻质土的物理力学性能及细观特征 [J]. 材料导报, 2022, 36 (17): 128-133.
[9] 彭远胜,欧孝夺,姬凤玲. 铝土尾矿泡沫轻质土单轴抗压力学特性及唯象本构模型 [J]. 应用基础与工程科学学报, 2023, 31 (03): 675-689.
[10] 欧孝夺, 彭远胜, 莫鹏, 江杰. 掺铝土尾矿泡沫轻质土的物理力学及水力特性研究[J]. 材料导报, 2020, 34(Z1): 241-245.
[11] 欧孝夺, 彭远胜*, 钟一和, 陈盛金, 晏雨露. 大型铝土排泥库混凝土坝动力计算模型及地震响应分析[J]. 应用基础与工程科学学报, 2022, 30(1): 76-88.
[12] Ou, X., Peng, Y., Hou, K., Su, J., & Jiang, J. (2019). Experimental research on biochemical consolidation of bauxite tailings clay. Arabian Journal of Geosciences, 12, 1-10.
[13] Xia, C., Zhu, M., Chen, W., Peng, Y., & Xie, K. (2023). Large-strain rheological consolidation analysis of multi-layered marine soft clays exhibiting natural structural characteristics. Marine Georesources & Geotechnology, 41(10), 1142-1155.
[14] Sun, X., Chen, Z., Chen, F., Wu, S., Zhang, W., Peng, Y., & Chen, G. (2024). Enhanced drainage performance of PVF-wicking geosynthetics: Development and experimental assessment. Geotextiles and Geomembranes.
[15] Sun, X., Chen, L., Chen, Z., Wang, C., Dong, Z., Wu, S., & Peng, Y. (2024). Acidified steel slag activated persulfate oxidation of municipal sludge for enhanced dewatering: Enhancement performance and mechanism analysis. Process Safety and Environmental Protection, 185, 1277-1285.
[16] Zhou, Y., Lai, Y., Chen, X., Han, X., & Peng, Y. (2024). Research on consolidation and settlement characteristics of soft soil with high initial water content. Journal of Ocean Engineering and Marine Energy, 1-15.
[17] 欧孝夺, 莫鹏, 江杰, 苏建, 彭远胜. 生石灰与微生物共同固化过湿性铝尾黏土试验研究[J]. 岩土工程学报, 2020, 42(4): 624-631.
[18] Chen, Z., Li, Y., Zhou, Y., Peng, Y., & Duan, Y. (2026). Preparation of Red Mud-Electrolytic Manganese Residue Paste: Properties and Environmental Impact. Buildings, 16(1), 224.
[19] Sun, X., Chen, Z., Sun, Z., Wu, S., Guo, K., Dong, Z., & Peng, Y. (2023). High-Efficiency utilization of waste shield slurry: A geopolymeric Flocculation-Filtration-Solidification method. Construction and Building Materials, 387, 131569.
[20] Yu, J., Ji, F., Lv, Q., Li, W., Lin, Z., & Peng, Y. (2024). Mechanical property and microstructure of fly ash-based geopolymer by calcium activators. Case Studies in Construction Materials, 21, e03811.
[21] Lv, Q., Yu, J., Ji, F., Gu, L., Chen, Y., & Shan, X. (2021). Mechanical property and microstructure of fly ash-based geopolymer activated by sodium silicate. KSCE Journal of Civil Engineering, 25, 1765-1777.
[22] Zhou, Y., Chen, X., Peng, Y., Chen, Z., & Chen, X. (2025). Experimental study on construction application of red mud-based concrete pavement. Case Studies in Construction Materials, e04500.
[23] Zhang, C., Liu, P., Song, T., He, B., Li, W., & Peng, Y. (2024). Elastic Modulus Prediction of Ultra-High-Performance Concrete with Different Machine Learning Models. Buildings, 14(10), 3184.
(2)标准规范
参与编写包括团体标准《工程废弃泥浆综合处理技术标准》、《盾构渣土资源化利用技术规范》和《赤泥基轻质土生产与应用技术规程》、地方标准《工程泥浆原地处理和资源化利用技术规程》和《固废复合胶结料轻质路基技术标准》等标准8部。参与编写的标准如下:
[1] DB43/T 3361-2025: 固废基轻质路基应用技术规范, 湖南省市场监督管理局.
[2] T/CIET 1692-2025: 盾构渣土资源化利用技术规范, 中国国际经济技术合作促进会.
[3] T/CMEA 24-2022: 工程废弃泥浆综合处理技术标准, 中国建筑工业出版社.
[4] T/JCJJ093-2024: 赤泥基轻质土生产与应用技术规程, 中国建材工业经济研究会.
[5] T/JCJJ092-2024: 赤泥基胶凝材料, 中国建材工业经济研究会.
[6] 广东省地方标准《工程泥浆原地处理和资源化利用技术规程》, 送审稿.
[7] SJG 187-2025: 岩溶地区城市轨道交通工程技术标准, 深圳市住房和建设局.
[8] TCSPSTC56-2020: 隧道瞬变电磁法超前地质预报技术规程, 中国科技产业化促进会.