何理

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何理

2024-04-13 15:35| 来源: 网络整理| 查看: 265

-- PHD THESIS --

Development of Integrated Simulation and Optimization Models for Petroleum-Contaminated Groundwater Remediation Management under Various Uncertainties

-- SELECTED PUBLICATIONS --

2020

[1] 何理*,王喻宣,尹方平,管延龙.全球气候变化影响下中亚水土资源与农业发展多元匹配特征研究.中国科学:地球科学,2020,9:1268-1279

[2] 何理*,王静遥,李恒臣,冯立阳,王喻宣,吴时强.面向高质量发展的河湖水系连通模式研究.中国水利,2020,10,11-15

[3] 唐孟,何理*,殷闯,刘佳.流域间洪灾风险传递规律的研究——以珠江流域为例.人民珠江,2020,5,1-7

2019

[4] H.W. Lu, P.P. Tian, L. He*. Evaluating the global potential of aquifer thermal energy storage and determining the potential worldwide hotspots driven by socio-economic, geo-hydrologic and climatic conditions. Renewable and Sustainable Energy Reviews, 2019, 112. (SCI)

[5] 何理*,冯立阳,赵文仪,焦蒙蒙.关于我国流域横向生态补偿机制的回顾与探索.环境保护,2019,47(18):32-38.

2018

[6] L. He*, S.Y. Zhang, Y.Z. Chen, L.X. Ren, J. Li. Techno-economic potential of a renewable energy-based microgrid system for a sustainable large-scale residential community in Beijing, China. Renewable & Sustainable Energy Reviews, 2018, 93, 631-641. (SCI)

[7] L. He*, P. L. Numerical investigation on double tube-pass shell-and-tube heat exchangers with different baffle configurations. Applied Thermal Engineering, 2018, 143. (SCI)

[8] Y.Z. Chen, L. He*, H.H. Zhao, J. Li. Energy-environmental implications of shale gas extraction with considering a stochastic decentralized structure. Fuel, 2018, 230. (SCI)

[9] L. He, Y.Z. Chen, Y. Kang, P.P. Tian, H.H. Zhao. Optimal water resource management for sustainable development of the chemical industrial park under multi-uncertainty and multi-pollutant control. Environmental Science and Pollution Research International, 2018. (SCI)

[10] Y.Z. Chen, L. He*, H.W. Lu, J. Li, L.X. Ren. Planning for regional water system sustainability through water resources security assessment under uncertainties. Water Resources Management, 2018, 32 (9), 3135-3153. (SCI)

[11] L. He*, Y.Z. Chen, J. Li. A three-level framework for balancing the tradeoffs among the energy, water, and air-emission implications within the life-cycle shale gas supply chains. Resources, Conservation and Recycling, 2018, 133, 206-228. (SCI)

[12] L. He*, Y.Z. Chen, L.X. Ren, J. Li, L. Liu. Synergistic management of flowback and produced waters during the upstream shale gas operations driven by non-cooperative stakeholders. Journal of Natural Gas Science and Engineering, 2018, 52, 591-608. (SCI)

[13] L. He*, Y.Z. Chen, H.H. Zhao, P.P. Tian, Y.X. Xue, L. Chen. Game-based analysis of energy-water nexus for identifying environmental impacts during Shale gas operations under stochastic input. Science of The Total Environment, 2018, 627, 1585-1601. (SCI)

[14] S. Yu, L. He*, H.W. Lu, H.Q. Jiang. Temporal–Spatial System Dynamic Changes in Transboundary River Basin Treatment Costs. Environmental Engineering Science, 2018, 356(6). (SCI)

[15] L. He, J. Shen, Y. Zhang. Ecological vulnerability assessment for ecological conservation and environmental management. Journal of Environmental Management, 2018, 206, 1115-1125. (SCI)

[16] Y.Z. Chen, L. He*, J. Li, S.Y. Zhang. Multi-criteria design of shale-gas-water supply chains and production systems towards optimal life cycle economics and greenhouse gas emissions under uncertainty. Computers and Chemical Engineering, 2018, 109, 216-235. (SCI)

[17] L. He, J. Shen*, Y. Zhang. Ecological vulnerability assessment for ecological conservation and environmental management. Journal of Environmental Management, 2018, 206, 1115-1125. (SCI)

[18] 杜艳春, 程翠云, 何理, 王倩, 葛察忠. 推动“两山”建设的环境经济政策着力点与建议. 环境科学研究, 2018, 31(09), 1489-1494.

[19] 陈义忠, 何理*, 赵洪海, 刘佳. 基于环境约束的页岩气-水资源系统多层决策.西南石油大学学报(自然科学版), 2018, 40(04), 151-161.

2017

[20] Q. Yang, H.W. Lu, L. He*, J. Shen, G.H. Huang. Development of a decision support system based on stochastic nonlinear optimization for petroleum-contaminated site management. Environmental Engineering and Management Journal, 2017, 16 (7), 1423-1434. (SCI)

[21] H.H. Dong, L. He*, H.W. Lu, J. Li. A microbial growth kinetics model driven by hybrid stochastic colored noises in the water environment. Stochastic Environmental Research and Risk Assessment, 2017, 31 (8), 2047-2056. (SCI)

[22] L. He*, Z.D. Xu, X. Fan, J. Li, H.W. Lu. Meta-modeling-based groundwater remediation optimization under flexibility in environmental standard. Water Environment Research, 2017, 89 (5), 456-465. (SCI)

[23] Y.Z. Chen, H.W. Lu, J. Li, L. He, L.X. Ren. A leader-follower-interactive method for regional water resources management with considering multiple water demands and eco-environmental constraints. Journal of Hydrology, 2017, 548, 121-134. (SCI)

[24] L. He*, P. Du, Y.Z. Chen, H.W. Lu, X. Cheng, B. Chang, Z. Wang. Advances in microbial fuel cells for wastewater treatment. Renewable & Sustainable Energy Reviews, 2017, 71, 388-403. (SCI)

[25] Y.Z. Chen, L. He*,Y.L. Guan, H.W. Lu, J. Li. Life cycle assessment of greenhouse gas emissions and water-energy optimization for shale gas supply chain planning based on multi-level approach: Case study in Barnett, Marcellus, Fayetteville, and Haynesville shales. Energy Conversion and Management, 2017, 134, 382-398. (SCI)

[26] L.X. Ren, L. He*, H.W. Lu, J. Li. Rough-interval-based multicriteria decision analysis for remediation of 1,1-dichloroethane contaminated groundwater. Chemosphere, 2017, 168, 244-253. (SCI)

[27] S.B. Sun, X.Y. Xu, Z.M. Lao, W. Liu, Z.D. Li, E.H. Garcia, L. He, J.N. Zhou. Evaluating the impact of urban green space and landscape design parameters on thermal comfort in hot summer by numerical simulation. Building and Environment, 2017, 123, 277-288. (SCI)

[28] X.Y. Xu, S.B. Sun, W. Liu, E.H. Garcia, L. He*, Q. Cai, S.J. Xu, J.J. Wang, J.N. Zhu. The cooling and energy saving effect of landscape design parameters of urban park in summer: A case of Beijing, China. Energy and Buildings, 2017, 149, 91-100. (SCI)

[29] P.Z. Tang, J.Z. Liu, H.W. Lu, Z. Wang, L. He. Information-based network environ analysis for ecological risk assessment of heavy metals in soils. Ecological Modelling, 2017, 344, 17-28. (SCI)

[30] J. Li, L. He*, Y.Z. Chen, X.S. Song, H.W. Lu. A bilevel groundwater management model with minimization of stochastic health risks at the leader level and remediation cost at the follower level. Stochastic Environmental Research and Risk Assessment, 2017, 31 (10), 2547-2571. (SCI)



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