邱順添
發(fā)布時(shí)間:2021-04-28
姓名:邱順添
職稱:教授
系別:環(huán)境工程系
主要研究方向:水環(huán)境系統(tǒng)綜合模擬;給排水管網(wǎng)規(guī)劃與設(shè)計(jì);智慧水務(wù);城市水系統(tǒng)仿真與工程規(guī)劃;算法優(yōu)化與工具開發(fā);公眾水文學(xué);水信息學(xué)
辦公電話:022-87402075
電子郵箱:soon.thiam.khu@tju.edu.cn
教育及工作經(jīng)歷:
2019/08—至今,天津大學(xué),環(huán)境學(xué)院,院長,教授,博士生導(dǎo)師
2015/08—2019/07,澳大利亞莫納什大學(xué)雙威校區(qū),土木工程系主任,教授
2012/08—至今,中國環(huán)境科學(xué)院,外籍教授
2009/06—至今,北京大學(xué),環(huán)境科學(xué)與工程學(xué)院,客座教授
2011/08—至今,中國水利水電科學(xué)研究院,客座教授
2010/02—2015/07,英國薩里大學(xué),環(huán)境與健康工程中心主任,教授
2000/10—2010/06,英國?巳卮髮W(xué),工程、計(jì)算與數(shù)學(xué)學(xué)院,高級講師
2000/04—2000/09,荷蘭代爾夫特技術(shù)大學(xué),高級研究員
1998/07—2000/03,丹麥水利研究所,研究員
1994/07 - 1998/07, 新加坡國立大學(xué),土木與環(huán)境工程,博士
1991 /07- 1994/07, 新加坡國立大學(xué),土木工程,碩士
獲獎(jiǎng)情況:
2019 國家高層次引進(jìn)人才
2012 英國皇家女皇科技教育獎(jiǎng)
學(xué)術(shù)兼職:
國際水利協(xié)會水系統(tǒng)調(diào)度分會副主席
國家科技計(jì)劃項(xiàng)目及國家人才評審專家
國家自然科學(xué)基金項(xiàng)目評審專家
天津市規(guī)劃資源局專家
天津市人民政府重大行政決策咨詢論證專家
“陸海統(tǒng)籌關(guān)鍵帶國土空間規(guī)劃與環(huán)境資源可持續(xù)利用工程技術(shù)創(chuàng)新中心”技術(shù)帶頭人
國際期刊 JAWRA、WEM、JFRM、JHER 等期刊副主編
主要研究成果:
城市智慧水系統(tǒng)工程平臺項(xiàng)目的城市配水和排水系統(tǒng)優(yōu)化成果受到廣泛應(yīng)用,同時(shí)制定了歐盟 H2020提案;可持續(xù)發(fā)展之河項(xiàng)目,自主開發(fā)的水環(huán)境改善的快速反饋模型作為ISIS-GIS 軟件核心技術(shù),擬創(chuàng)造 951.7 億元商業(yè)價(jià)值;河口形態(tài)工程中泥沙輸移模型率定研究,開發(fā)的“元胞自動(dòng)機(jī)下遺傳優(yōu)化”優(yōu)化算法成為 MIKE 軟件中多目標(biāo)水系統(tǒng)模型率定驗(yàn)證的關(guān)鍵模塊,廣泛應(yīng)用于 30 個(gè)多個(gè)國家。
科研項(xiàng)目:
先后主持/參與過中國、英國基金委項(xiàng)目、歐盟項(xiàng)目,中英中歐雙邊項(xiàng)目以及各類橫向課題等 42 項(xiàng)項(xiàng)目,經(jīng)費(fèi)總額約 5000 萬人民幣。代表性項(xiàng)目如:
1. 歐盟H2020,RECONECT: Regenerating ECOsystems with Nature-based solutions for hydro-meteorological risk reduction,2018/05- 2022/04,50萬歐元;
2. “十三五”國家重點(diǎn)研發(fā)計(jì)劃課題,高寒區(qū)供水渠道突發(fā)險(xiǎn)情應(yīng)急調(diào)度與搶險(xiǎn)技術(shù),2017/12-2021/12,304萬元;
3. 莫納什大學(xué)CRM2403,River of Sustainability,2017/12-2018/06,25萬馬來西亞林吉特;
4. 莫納什大學(xué)AEP-17-016,multidisciplinary research competitive grant application year 2017-pump priming scheme,2017/06-2017/12 ,73680馬來西亞林吉特;
5. “十三五”國家重點(diǎn)研發(fā)計(jì)劃項(xiàng)目,長江上中游特大水利樞紐調(diào)控與安全運(yùn)行技術(shù)研究,2016/07-2021/12,3000萬;
6. 國家自然科學(xué)基金面上基金,快速城市化流域降雨徑流污染季節(jié)變化的機(jī)理與不確定性,2011/01-2013/12,37萬;
7. 歐盟FP6,New Approaches to Adaptive Water Management under Uncertainty,2005/01-2009/02,15118673歐元;
8. 英國工程與自然科學(xué)研究理事會,Multi-objective pipe network optimization: A holistic approach for design, upgrading and expansion,2002/10-2004/07,64155英鎊;
代表性論文:
發(fā)表 SCI論文 200 余篇,其中水系統(tǒng)優(yōu)化算法的代表性論文單篇他引率 510 次,部分代表作如下:
1. 公眾水文學(xué)——理論框架.天津大學(xué)學(xué)報(bào)(自然科學(xué)與工程技術(shù)版), 2021, 54(10): 991-997.
2. 公眾水文學(xué)——技術(shù)體系.天津大學(xué)學(xué)報(bào)(自然科學(xué)與工程技術(shù)版), 2021, 54(11): 1101-1110.
3. Effect of coagulation on bio-treatment of textile wastewater: Quantitative evaluation and application[J]. Journal of Cleaner Production, 2021(7):127798.
4. Simulation platform of human-environment systems for water environment carrying capacity research. J. Cleaner Production, 2020,250:119577.
5. Validation of the hypothesis on carrying capacity limits using the water environment carrying capacity. Sc. Total Env., 2019,665:774-784.
6. Modelling the combined effects of runoff reduction and increase in evaporatranspiration for green roofs with a storage layer. Ecological Engineering, 2019, 127:302-311.
7. Status and challenges of water pollution problems in China: learning from the European experience. Environ. Earth Sc., 2014,72:1243-1254.
8. Efficient Multi-Objective Optimal Design of Water Distribution Networks on a Budget of Simulations Using Hybrid Algorithms, Environm. Model. Softw., 2019,24(2):202–213.
9. Use of surrogate modelling for multiobjective optimisation of urban wastewater systems. Water Science and Technology, 2019,60(6): 1641-1647.
10. Incorporating multiple observations for distributed hydrologic model calibration: an approach using a multi-objective evolutionary algorithm and clustering. Adv. in Water Resour. 2008,07: 1387–1398.
11. Water quality Model Calibration under Unknown Demands. ASCE J. Water Res. Plng & Mgt. 2008,134(4):326-336.
12. An Investigation on Preference Ordering Ranking Scheme in Multiobjective Evolutionary Optimization, IEEE Trans. Evol. Computation, 2007,11(1):17-45.
13. Incorporating spatial and temporal information for urban drainage model calibration: an approach using Preference ordering genetic algorithm. Adv. in Water Resour. 2006,29(8).
14. From single-objective to multiple-objective multiple-rainfall events automatic calibration of urban storm water runoff models using genetic algorithms. Water Science and Technology, 2006,54(6-7): 57-64.
15. A novel evolutionary metaheuristic for the multi-objective optimisation of real-world water distribution networks, Engrg Opt., 2006,38(3):1-18.
16. Multiobjective calibration with Pareto preference ordering: An application to rainfall-runoff model calibration, Water Resour. Res., 205,41(3),
17. A novel cellular automata approach to optimal water distribution network design, J. Computing in Civil Engrg., ASCE, 2006,20(1):49-56.
18. A hybrid genetic algorithm for the design of water distribution networks, Engrg. Applications of Artificial Intelligence, 2005,18(4):461-472.
19. Reduction of Monte Carlo simulation runs for uncertainty estimation in hydrological models, Hydrol. Earth System Sc., 2003,7(5):680-692.
20. Genetic programming and its application in real-time flood forecasting. J. American Water Resources Assoc., 2001, 36(2):439- 452.
出版專著:
1. Proc. 8th International Conference on Computing and Control of the Water Industry: Water Management for the 21st Century. ISBN 0-9539140-2-X
2. Proc. ACTUI 2004: Decision Support in the Water Industry under Conditions of Uncertainty. ISBN: 09-539140-1-1.
3. 城市水問題新解譯:荷蘭水城的設(shè)計(jì)與管理, 科學(xué)出版社.
4. Applications of Evolutionary Computing in Hydrological Sciences. In Anderson, M.G., ed., Encyclopaedia of Hydrological Sciences: J. Wiley. 2005.
5. Many-Objective Evolutionary Optimisation, in Juan R. Rabuñal, Julián Dorado and Alejandro Pazos (eds),Encyclopaedia of Artificial Intelligence, Information Science Publisher. ISBN: 978-1-59904-849-9
6. Stochastic System Dynamics Integrative Model: An Integrated Modeling Framework Spanning Policy Domains Environmental Modeling for Sustainable Regional Development: System Approaches and Advanced Methods.
7. Research and Innovation Mapping Study for the UK Water Research and Innovation Framework. UKWIR Report Ref. No. 11/RG/10/6
授權(quán)發(fā)明專利:
1. 一種水利施工用管道內(nèi)壁清理裝置, 2021-1-12, CN202110038500.4
2. 一種階段式農(nóng)田硬質(zhì)生態(tài)排水渠, 2019-8-6, ZL201910719733.3
3. 一種地下水質(zhì)水量監(jiān)測裝置, 2021-1-12, CN202110038465.6
4. 一種土壤水質(zhì)采樣檢測設(shè)備, 2021-1-12, CN202110037799.1
5. 一種水利工程用排淤裝置, 2019-8-6, ZL201910719725.9
6. 一種街區(qū)式城市內(nèi)澇防澇蓄水裝置, 2021-08-06, CN113216062A.
- 中文名
- 邱順添
- 國 籍
- 英國
- 畢業(yè)院校
- 英國?巳卮髮W(xué)
- 職 稱
- 講師、副教授
2001-2009年,任英國?巳卮髮W(xué)(University of Exeter)講師、副教授,2010年至今,任英國University of Surrey 教授。已在國際知名刊物發(fā)表論文30余篇,發(fā)表會議論文和論著章節(jié)60余篇(節(jié)),涉及的領(lǐng)域包括水信息學(xué)和城市水系統(tǒng)研究。 主要研究方向包括環(huán)境模型的多目標(biāo)校準(zhǔn),城市水系統(tǒng)的適應(yīng)性管理,城市水基礎(chǔ)設(shè)施的綜合模擬及人為活動(dòng)對水循環(huán)的影響等。承擔(dān)了兩個(gè)英國項(xiàng)目和2個(gè)歐盟項(xiàng)目,同時(shí)參與很多其他項(xiàng)目,受資助金額總計(jì)100多萬英鎊 。