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Management Science and Engineering

Zhang Qi

Personal Profile

School of Economics and Management

Ph.D

Professor

Management Science and Engineering

ZhangQi56@tsinghua.org.cn

Research Areas

Resources and Environmental Management and Policy

Energy Economy Finance and Policy

Big Data Analysis

Green finance

Financial Techechnology

Research Projects

General Program of National Science Foundation of China, Research on Chinese Electric Vehicle Market Diffusion Model and Boosting Policy Based on Consumers' Limited Rationality, No. 71974197, 2020.1-2023.12, Chair

The International Cooperation and Cultivation Project for Innovative Talents of the CSC, the Second Phase of the China-France Energy Economy Applied Talent Cultivation Project, 2019-2021, Chair

General Program of National Science Foundation of China, Research on PV Poverty Alleviation Performance Model Simulation and Policy Innovation in Crowdfunding Mode, No. 71774171, 2018.1-2021.12, Chair

National Development and Reform Commission, Research on major issues to promote the construction of natural gas production supply, storage and marketing system, 2018.8-2018.12, Chair

Beijing Social Science Fund Project, Beijing New Energy Vehicle Power Battery Recycling Mode Optimization and Policy Innovation Research, 2018.8-2020.6, Chair

The International Cooperation and Cultivation Project for Innovative Talents of the CSC, the first phase of the Sino-French Energy Economy Applied Talent Cultivation Project, 2016-2018, host

The International Cooperation and Cultivation Project for Innovative Talents of the CSC, the first phase of the Sino-French Energy Economy Applied Talent Cultivation Project, 2016-2018, host

China National Petroleum Corporation Project, Research on China's Oil and Gas Industry Transformation with Multiple Objectives, 2018.11-2019.7, Chair

National Energy Administration Development Planning Project, 2030 Energy Production and Consumption Revolution Strategy Implementation Plan, 2016.9-2017.9, Chair

Project of China National Petroleum Corporation, development trend of the oil and gas industry before 2030, 2015.3-2016.3, Chair

Sub-project of the key project of the Chinese Academy of Engineering, based on the geopolitical and national situation analysis of the countries along the route, research on the oil and gas cooperation strategy along the road and the belt, 2015.3-2015.12, Chair

China Scholarship Council International Talent Training Project for Innovative Talents, China-EU Energy Strategic Talent Training Project for International Cooperation, 2015-2017, Chair

Outstanding Talent Project of China University of Petroleum (Beijing), Research and Development of Comprehensive Model of Energy Development Strategy, 2013-2016, Chair

National Soft Science Research Plan, Research on the status of fossils in the world energy transition, 2014-2015, Chief researcher

Global-COE Project of Ministry of Education, Culture, Sports, and Energy Science in the Global Warming Age-Planning and Strategic Analysis of Zero-Carbon Electricity Energy Systems, 2008-2013, Host

Kansai Electric Power Project in Japan, Research on Planning, Management and Policy Strategy of Nuclear Power and Future Low-Carbon Smart Power System, 2011-2012, Chair

Japanese Ministry of Education Ministry of Education Scholarship for Postgraduate Course Studies, Research on Policy Strategy Analysis and Evaluation Methodology for Sustainable Development of Energy Systems, 2005-2008, Chair

China Guangdong Electric Power Group, China Advanced Nuclear Power Plant Reactor Technology Expert Evaluation Decision Support System, 2002-2005, Chief researcher

Publications

1.Efficient and Equitable Allocation of Renewable Portfolio Standards Targets Among China's Provinces, Energy Policy, 2019 125: 170-180

2.Substitution effect of New-Energy Vehicle Credit Program and Corporate Average Fuel Consumption Regulation for Green-car Subsidy, Energy 2018 152: 223-236

3.A review of photovoltaic poverty alleviation projects in China: Current status, challenge, and policy recommendations. Renewable and Sustainable Energy Reviews, 2018 94:214-223.

4.Policy simulation for promoting residential PV considering anecdotal information exchanges based on social network modelling, Applied Energy, 2018 223: 1–10

5.Recycling,,Mechanisms and Policy Suggestions for Spent Electric Vehicles’ Power Battery -A Case of Beijing, Journal of Cleaner Production, 2018 186: 388-406

6.Substitution effect of renewable portfolio standards and renewable energy certificate trading for feed-in tariff, Applied Energy, 2018 227: 426-435

7.“雙積分”政策對乘用車生產(chǎn)商策略與社會福利影響研究.系統(tǒng)工程理論與實踐,,2018年10月錄用.

8.我國能源生產(chǎn)與消費革命的挑戰(zhàn)與展望.國家治理,2018(33):3-12,約稿

9.Corrective regulations on renewable energy certificates trading: Pursuing an equity-efficiency trade-off, Energy Economics 2019; 80: 970-982

10.Investment strategy of hydrothermal geothermal heating in China under policy, technology and geology uncertainties, Journal of Cleaner Production, 2019 207: 17-29

11.Promotion Policies for Third Party Financing in Photovoltaic Poverty Alleviation Projects Considering Social Reputation, Journal of Cleaner Production, 2019 211: 350-359

12.Investment strategy for underground gas storage facilities based on real option model considering gas market reform in China, Energy Economics, 2018 70:132-142

13.Factors influencing the economics of public charging infrastructures for EV –A review, Renewable and Sustainable Energy Reviews, 2018 94: 500-509

14.Study on the impacts of sharing business models on economic performance of distributed PV-Battery systems, Energy,2018 161:544-558

15.The impacts of market reform on the market penetration of natural gas-fired electricity and renewable energy in China. Petroleum Science, 2017 14(4): 831-841

16.Study on the promotion impact of demand response on distributed PV penetration by using non-cooperative game theoretical analysis. Applied Energy, 2017 185(2): 1869-1878.

17.Study on the promotion of natural gas-fired electricity with energy market reform in China using a dynamic game-theoretic model. Applied Energy, 2017 185[2]: 1832-1839

18.Study on crowdfunding’s promoting effect on the expansion of electric vehicle charging piles based on game theory analysis. Applied Energy, 2017 196: 238-248

中國的天然氣戰(zhàn)略:布局,、改革與未來趨勢. 人民論壇·學(xué)術(shù)前沿, 2016(22):63-69.,,約稿

20.世界原油期貨國際化發(fā)展經(jīng)驗比較及啟示,中國石油和化工經(jīng)濟分析,,2018,12:39-42, 約稿

21.中國原油期貨國際化發(fā)展的挑戰(zhàn)與對策,,中國石油和化工經(jīng)濟分析,2018,12: 43-45, 約稿

22.基于博弈分析的我國天然氣儲氣庫開發(fā)策略及運營模式研究[J]. 石油科學(xué)通報, 2016, 1(1): 175-182 (創(chuàng)刊號)

23.基于復(fù)雜網(wǎng)絡(luò)的電動汽車充電樁眾籌市場信用風(fēng)險建模與分析.中國管理科學(xué),,2019, 27 (8): 66-74

24.Multi-region optimal deployment of renewable energy considering different interregional transmission scenarios, Energy, 2016 108: 108-118

25.Study on the Impacts of Natural Gas Supply Cost on Gas Flow and Infrastructure Deployment in China, Applied Energy, 2016 162: 1385-1398

26.A scenario analysis of oil and gas consumption in China to 2030 considering the peak CO2 emission constraint, Pet. Sci. 2016 13:370–383

27.An integrated scenario analysis for future zero-carbon energy system, International Journal of Energy Research, 2015 39[ 7]: 993–1010

28.Review of Japan's Power Generation Scenarios in light of the Fukushima Nuclear Accident, International Journal of Energy Research, 2014 38 [5]: 539–550

29.An Integrated Model for Long-Term Power Generation Planning Toward Future Smart Electricity Systems, Applied Energy, 2013 112: 1424-1437

30.A Methodology for Economic and Environmental Analysis of Electric Vehicles with Different Operational Conditions, Energy, 2013 61: 118-127

31.Integration of PV Power into Future Low-Carbon Smart Electricity Systems with EV and HP in Kansai Area, Japan, Renewable Energy, 2012 44: 99–108

32.Scenario Analysis on Future Electricity Supply and Demand In Japan, Energy, 2012 38: 376-385

33.Economic and Environmental Analysis of Power Generation Expansion in Japan Considering Fukushima Nuclear Accident Using a Multi-Objective Optimization Model, Energy, 2012 44: 986-995

34.Long-term Planning for Nuclear Power’s Development in Japan for a Zero-Carbon Electricity Generation System by 2100, Fusion Science and Technology, 2012 61: 423-427

35.Qi Zhang,, Integrated Analyses and Evaluation Support System of Global Energy Systems for Sustainable Development: System Development with a Case Study for Chinese Energy Policy Toward Sustainable Urban Infrastructure in East Asia, pp. 107-129, Kyoto University Press, 2014

36.Qi Zhang, et al. Multi-Objective Optimization Analysis of Post-Fukushima Power Generation Planning in Japan with Considering Nuclear Power’s Risk Cost, Green Energy and Technology 2013, Springer, 2013 (ISBN: 978-4-431-54264-6)

37.Qi Zhang, et al. Long-Term Scenario Analysis of a Future Zero-Carbon Electricity Generation System in Japan, Green Energy and Technology 2011, pp.17-24, Springer, 2011 (ISBN 978-4-431-53910-4)

38.張奇,、李律松、衛(wèi)建偉,,《Visual C#數(shù)據(jù)庫項目案例導(dǎo)航》,,清華大學(xué)出版,2005