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成果及论文

主要承担项目:

一、主持国家级及省部级科研项目:

1 国家自然科学基金,面上项目,裂隙水双分子反应性溶质反常传输的裂隙网络结构控制与模型研究42377079 2024年立项,49万元;

2、国家重点研发计划专题,石油行业场地DNAPLs迁移转化多场耦合关键参数获取,2023YFC37060042023年立项,50万元;

3、江苏省自然科学基金,面上项目,复杂地质条件下隧洞涌突水综合预测及安全预警系统,SBK20220224692022年立项,10万元;

4 中央高校业务经费,网络裂隙反应性溶质运移模型研究,B220202053 2022年立项,12万元;

5 国家重点研发计划专题,典型场地高风险有机污染物三维空间分布的动态监测与关键参数获取,2019YFC18043022020年立项,133.2万元;

6 云南省重大科技项目,西南复杂地质条件下特大型引调水工程安全建设与高效运行关键技术研究(第一期)二标段:复杂地质条件下长大隧洞突涌水(泥)灾害机理与防治关键技术研究,202002AF080003 2019年立项,548万元;

7 国家自然科学基金,青年科学基金项目,粗糙单裂隙介质溶质非费克运移驱动力及模型研究,41402197 2014年立项,25万元;

8 江苏省自然科学基金,青年科学基金项目,多孔介质非达西流下反应性溶质运移模拟研究,BK20130830 2013年立项,20万元。

 二、主持其它项目:

1、 铜陵横港智慧物流园安徽六国磷石膏堆场原位管控设计项目,2023年立项;

2、 安徽六国化工磷石膏堆场地下水环境溯源排查项目, 2022年立项;

3、 马鞍山市姑溪河当涂闸枢纽工程地下水环境影响评价专题,2021年立项;

4、  安徽六国磷石膏堆场地下水风险评价,2021年立项;

5、  长龙山环境信访溯源排查研究项目,2021年立项;

6、 安徽六国化工股份有限公司磷石膏堆场地下水环境监测点布设方案,2019年立项;

7、 安龙工业园工业固废公共渣场地下水影响专题,2018年立项;

8、 安徽六国化工股份有限公司磷石膏堆场底部防渗性能研究项目,2018年立项;

9、 重庆市渝西水资源配置工程地下水环境影响评价专题研究,2018年立项;

10、 滇中引水工程香炉山隧洞地下水动态监测及施工期地下水系统影响研究,2017年立项;

11、 贵州省凤山水库工程地下水环境影响专题研究,2017年立项;

12、 贵州省观音水库工程地下水环境影响专题研究,2017年立项;

13、 地下水点源污染调查评价技术方法,2016年立项;

14、 安徽六国化工股份有限公司中低品位磷矿资源综合利用技术升级改造项目地下水环境评价,2015年立项;

15、 贵州黄家湾水利枢纽工程地下水环境影响评价专题,2014年立项;

16、 铜陵市横港绿色化工集中区规划项目地下水环境评价,2014年立项;

17、 芜湖市绿洲环保能源有限公司生活垃圾焚烧炉改扩建工程项目地下水环境评价,2012年立项。

 

三、主要参与项目(按时间倒序)

1.       国家自然科学基金委员会,面上项目,41877171,孔隙-裂隙双重介质DNAPLs双向传质行为研究,2019-012022-1261

2.        国家自然科学基金委员会,青年科学基金项目,41402198,考虑地面沉降约束的地下水多目标模拟-优化管理模型研究,2015-012017-12

3.   国家自然科学基金委员会,面上项目,40872166,基岩裂隙中溶质(污染物)Non-Fickian运移试验与模拟研究,2009-012011-12

发表论文:

第一作者及通讯作者发表论文:(时间倒序排列)

1、   陈舟,杜昭颖,金敏,钱家忠,卞小芮.单裂隙非线性流下反应性溶质运移数值模拟研究.水动力学研究与进展A,2023,38(01):97-06. DOI:10.16076/j.cnki.cjhd.2023.01.013.

2、   陈舟,王锦国,张延杰,卫云波,窦智,杨蕴,李国庆.水利水电工程地下水环境影响评价关键问题及案例分析.河海大学学报(自然科学版),2023,51(3):48-55. 10.3876/j.issn.1000-1980.2023.03.007

3、   田峥颖,陈舟,马兴,杜昭颖,金敏.边界层对粗糙单裂隙溶质运移影响试验.河海大学学报(自然科学版),2023,51(2):106-113. 10.3876/j.issn.1000-1980.2023.02.014

4、   Zhou Chen*, Zhengying Tian, Hongbin Zhan, Jingtao Huang, Yong Huang, Yunbo Wei, Xing Ma; The Effect of Roughness on the Nonlinear Flow in a Single Fracture with Sudden Aperture Change. Lithosphere 2022; 5775275. (二区,IF3.375) doi: https://doi.org/10.2113/2022/5775275

5、   Zhou Chen*, Jintao Huang, Hongbin Zhan, Jinguo Wang, Zhi Dou*, Chuanjian Zhang, Changsheng Chen, Yesheng Fu. Optimization schemes for deep foundation pit dewatering under complicated hydrogeological conditions using MODFLOW-USG. ENGINEERING GEOLOGY, 2022, 30(20) (一区,TOPIF6.755) https://doi.org/10.1016/j.enggeo.2022.106653

6、   Zhou Chen*, Xing Ma Hongbin Zhan, Zhi Dou1*, Jinguo Wang, Zhifang Zhou, Chuanlu Peng. Experimental investigation of solute transport across discontinuous interface of porous media under reversible flow directions, Ecotoxicology and Environmental Safety,2022,238,1135666, https://doi.org/10.1016/j.ecoenv.2022.113566, (一区,IF6.291)

7、   Chen, Zhou*; Qian, Jiazhong; Zhan, Hongbin; Zhou, Zhifang; Wang, Jinguo; Tan, Yefei. Effect of roughness on water flow through a synthetic single rough fracture, ENVIRONMENTAL EARTH SCIENCES, 2017, 76(4): 186, DOI: 10.1007/s12665-017-6470-7

8、   Chen, Zhou*; Zhan, Hongbin; Zhao, Guiqing; Huang, Yong; Tan, Yefei. Effect of Roughness on Conservative Solute Transport through Synthetic Rough Single Fractures, WATER, 2017,9(9):656, DOI10.3390/w9090656

9、   陈舟*, 赵贵清王志光,岩溶区某磷石膏堆放场渗漏特征分析水文地质工程地质, 2017(2). DOI10.16030/j.cnki.issn.1000-3665.2017.02.22

10、赵贵清陈舟*, 周云,深埋隧洞涌水量预测数值模型研究进展工程勘察, 2017, 45(4):8. DOICNKI:SUN:GCKC.0.2017-04-006

11、彭传路,陈舟*,窦智,施佳会,计顺顺,某岩溶区固废渣场地下水污染模拟中国煤炭地质,2019,31(9) 80-86;1674-1803

12、Chen, Z., J.Z. Qian, and H. Qin (2011), Experimental study of the non-darcy flow and solute transport in a channeled single fracture, Journal of Hydrodynamics, 23(6), 745-751, doi:10.1016/s1001-6058(10)60172-2.

13、Chen, Z., J.Z. Qian, S.H. Luo, and H.B. Zhan (2009), Experimental study of friction factor for groundwater flow in a single rough fracture, Journal of Hydrodynamics, 21(6), 820-825, doi:10.1016/s1001-6058(08)60218-8. (SCI收录)

14、Z.Chen, J.Z.Qian, H.B.Zhan, et al. 2009. Mobile-immobile model in solute transport through porous and fracture media. 7th International Conference on Calibration and Reliability in Groundwater Modeling, IAHS Publ. 341:313-316International conference on calibration and reliability in groundwater modelling, Wuhan , CHINE (20/09/2009) 2011, vol. 341, pp. 154-158 ISBN 978-1-907161-15-5 (ISTP收录2009,同时被IASH红皮书收录-2011).

15、Z.CHEN, H.N. LI and R.Z. LI. 2011.Quantification non-linear flow and transport in fractures based on boundary layer theory and MIM. Geochimica et Cosmochimica Acta. 75, Issue 12, Supplement 1, Pages :A659-A659

16、Z. Chen, L. Ma, F. Hua, et al. 2010. Non-Fickian and non-Darcian laws in the simulation of flow and solute transport, Proceedings on WRI-13. Taylor &Francis Group, ISBN 978-0-415-60426-0 (Hbk+CD-rom), 978-0- 203- 83404-6 (ISTP收录)

17、Chen Z, Qian JZ, Sun LQ et al. 2010. Experimental study of nitrate migration and transformation in saturated groundwater under variational hydraulic gradient, Proceedings of the 3rd International Conference on Environmental Technology and Knowledge Transfer, p438-443. (EI收录)

18、陈舟,钱家忠,姜常让等. 2008. 多孔介质地下水非达西渗流研究进展合肥工业大学学报(自然科学版), 31(10):1539-1543.

其它文章:

1、   Dou, Zhi; Chen, Zhou; Zhou, Zhifang; Wang, Jinguo; Huang, Yong. Influence of eddies on conservative solute transport through a 2D single self-affine fracture. INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER. 2018, 121(597-606),10.1016/j.ijheatmasstransfer.2018.01.037

2、   Qian, J., M. Liang, Z. Chen, and H. Zhan (2012), Eddy correlations for water flow in a single fracture with abruptly changing aperture, Hydrological Processes, 26(22), 3369-3377, doi:10.1002/hyp.8332.

3、   Huang, H., J.Z. Qian, X.X. Kuang, Z. Chen, and R.Z. Li (2012), Experimental study of airflow induced by pumping tests in unconfined aquifer with low-permeability cap, Journal 3J.Z. Qian, Z. Chen, H.B. Zhan and H.C. Guan. 2011. Experimental study of the effect of roughness and Reynolds number on fliuid flow in rough-walled single fractures: a check of local cubic law. Hydrological Processes. 25(4), 614-622, doi:10.1002/hyp.7849.

4、   Qian, J. Z., Z. Chen, H. B. Zhan, and S. H. Luo (2011), Solute transport in a filled single fracture under non-Darcian flow, International Journal of Rock Mechanics and Mining Sciences, 48(1), 132-140, oi:10.1016/j.ijrmms.2010.09.009.

5、   Qian, J., H. Zhan, Z. Chen, and H. Ye (2011), Experimental study of solute transport under non-Darcian flow in a single fracture, Journal of Hydrology, 399(3-4), 246-254, doi:10.1016/j.jhydrol.2011.01.003.

6、   Qian, J., L. Wang, H. Zhan, and Z. Chen (2011), Urban land-use effects on groundwater phosphate distribution in a shallow aquifer, Nanfei River basin, China, Hydrogeology Journal, 19(7), 1431-1442, doi:10.1007/s10040-011-0770-x. (IF:1.417)

7、   Zhang YF, Chen Z, Qian JZ et al. 2010. Experimental and Numerical Study of Flow and Contaminant Interaction in Riparian Zones, Proceedings of the 3rd International Conference on Environmental Technology and Knowledge Transfer, p 483-486. (EI)

8、   Sun LQ, Qian JZ, Chen Z, et al. 2010. Experimental Simulation of Flow Characteristic in Inclined Single Fracture, Proceedings of the 3rd International Conference on Environmental Technology and Knowledge Transfer, p 423-426. (EI).

9、   Y. Liu, J. Z. Qian, Z. Chen and J.F. 2010. Wu. An experimental study on the autotrophic denitrification with sulphur electron donor in groundwater. Geochimica et Cosmochimica Acta, 74(12):A625. (SCI)

10、            Wang ZP, Shen HC, Liu Y, Chen Z, Yin XX. 2010. Groundwater Nitrate Removal under Different Hydraulic Conditions Using Reed Stalk as the Carbon Source, Proceedings of the 3rd International Conference on Environmental Technology and Knowledge Transfer, p 947-951. (EI).

11、            Qian, J., Zhan, H., Wu, J., and Chen, Z., 2009. What we can learn from sequential multi-well pumping tests in fracture-karst media? a case study in zhangji, China. Hydrogeology Journal, 17:1749-1760, doi:10.1007/s10040-009-0463-x (SCIIF:1.417).

12、            Y. LIU, J.Z. Qian, Z. CHEN et al. 2009. Characterization and bioremediation of groundwater contaminated with nitrate in wetland of Chaohu lake. Geochimica et Cosmochimica Acta, A783. (SCI)

13、            L.W. Chen, H.R. Gui, J.Z. Qian, X.X Yin, Z. Chen. 2009. Contaminant mass flux changes with induced oxide mineral precipitation at the up-gradienr DNAPL source zones, Proceedings on ICCRGM, 309-312. (ISTP).

14、            LV C, ZHOU YX, CHEN Z et al. 2008. Experimental Research of Several Methods of Sludge Pretreatment, Proceedings on AEETKT, 78-82. (ISTP)

15、            LIU Y, Qian JZ, WANG LL, CHEN Z. 2008. Simulated Experiment of Removing Nitrate from Groundwater by Denitrobacteria, Proceedings of AEETKT, 215-217. (ISTP)

16、            黄倩王锦国陈舟张文喆,  2015.  黏滞性对LNAPL在非饱和多孔介质中优先流影响的试验研究 .   河海大学学报 ( 自然科学版 ) 43(01):66-71. 

17、            张文章,  王锦国,  陈舟,  2015.  云南鹤庆西山岩溶地下水同位素及水化学分析,   工程勘察(03), 51-56.

18、            郭忠杰王锦国陈舟施佳会张文章, 2015. 云南省鹤庆西山温水龙潭温泉成因机制 探讨,  工程勘察(05), 43-48+98.

19、            施佳会,  王锦国,  陈舟, 2014.  其宗岩溶泉成因简析,  水电能源科学, 32 (11), 58-62.

20、            王志平,孙世群,钱家忠,陈舟.有机碳对地下含水层中硝酸盐去除影响试验研究.   中国科学技术大学学报, 2010, 40(7).

21、            夏琼,  钱家忠,  陈舟.   2009.基于支持向量机的淮南市浅层地下水水质评价.  水文地质工程地质, 36(1):56-59+68.