基本情況
吳保生,清華大學(xué)水利系 研究員
1978-1982,武漢水利電力學(xué)院河流力學(xué)及治河工程系,工學(xué)學(xué)士
1985-1988,武漢水利電力學(xué)院水動系,工學(xué)碩士
1996-1998,美國科羅拉多州立大學(xué)土木工程系,工學(xué)博士
工作履歷
1982-1985,水利部黃河水利委員會水利科學(xué)研究院,助理工程師
1985-1988,武漢水利電力學(xué)院水動系,碩士研究生
1988-1990,水利部黃河水利委員會水利科學(xué)研究院,工程師
1991-1993,水利部黃委會水利科學(xué)研究院,高級工程師、泥沙研究所副所長
1993-1994,美國科羅拉多州立大學(xué)土木工程系,高級訪問學(xué)者
1994-1995,美國水力技術(shù)工程與軟件公司,高級工程師,項(xiàng)目主管
1996-1998,美國科羅拉多州立大學(xué)土木工程系,博士研究生
1999-2000,美國水力技術(shù)工程與軟件公司,高級工程師,項(xiàng)目主管
2000-2003,清華大學(xué)水利系,副研究員
2004-至今,清華大學(xué)水利系,研究員、博士生導(dǎo)師、河流研究所所長
學(xué)術(shù)兼職
英文期刊《International Journal of Sediment Research》副主編
國際水力學(xué)會(IAHR) 會員、沖積河流水力學(xué)專業(yè)委員會委員
美國土木工程師學(xué)會(ASCE)會員
世界泥沙研究學(xué)會(WASER)發(fā)起會員
中國水利學(xué)會會員
研究領(lǐng)域
泥沙運(yùn)動力學(xué)
河床演變學(xué)
泥沙數(shù)學(xué)模型
工程泥沙
河流生態(tài)環(huán)境
研究概況
南水北調(diào)中線工程長距離調(diào)水水量及水力的調(diào)配與控制研究,國務(wù)院南水北調(diào)辦重點(diǎn)項(xiàng)目,2004-2005
維持黃河下游排洪輸沙基本功能的關(guān)鍵技術(shù)研究—黃河下游河槽排洪輸沙功能的目標(biāo)方案分析,國家“十五”科技攻關(guān)計(jì)劃,2004-2005
黃河下游泥沙與地貌預(yù)報(bào)模擬,中荷戰(zhàn)略科學(xué)聯(lián)盟計(jì)劃項(xiàng)目,2004-2006
長江流域水沙產(chǎn)輸及其與環(huán)境變化耦合機(jī)理-流域生態(tài)與水利工程優(yōu)化控制,國家重點(diǎn)基礎(chǔ)研究發(fā)展計(jì)劃“973”資助項(xiàng)目,2004-2006
水庫運(yùn)用及河道整治對黃河下游河型變化的影響,國家自然科學(xué)基金委員會、水利部黃河水利委員會黃河聯(lián)合研究基金項(xiàng)目,2004-2006
流域水沙過程與臨界調(diào)控機(jī)理,創(chuàng)新研究群體科學(xué)基金,2003-2005
水沙變異條件下黃河下游河道再造床機(jī)理及調(diào)控對策研究,國家自然科學(xué)基金重點(diǎn)項(xiàng)目,2003-2006
潼關(guān)高程控制及三門峽水庫運(yùn)用方式研究,水利部重大研究課題,2002-2005
小浪底水庫運(yùn)用后黃河下游游蕩性寬河道發(fā)展趨勢及其治理研究,橫向課題,2002-2004
獎(jiǎng)勵(lì)與榮譽(yù)
2005年,項(xiàng)目“游蕩型河流的演變規(guī)律、模擬技術(shù)及工程應(yīng)用”獲教育部科技進(jìn)步一等獎(jiǎng)
2004年,項(xiàng)目“泥沙運(yùn)動力學(xué)基本理論”獲教育部自然科學(xué)一等獎(jiǎng)
1999年, 獲美國水利技術(shù)與軟件工程公司杰出貢獻(xiàn)獎(jiǎng)
1996年,研究項(xiàng)目“黃河小浪底樞紐工程懸沙模型”獲黃委會科技進(jìn)步一等獎(jiǎng)
1996年,獲美國水利技術(shù)與軟件工程公司最佳工程師獎(jiǎng)
1995年,研究項(xiàng)目“黃河小浪底樞紐工程懸沙模型”獲水利部科技進(jìn)步一等獎(jiǎng)
1992年, 論文“黃河下游水庫實(shí)時(shí)防洪優(yōu)化調(diào)度的研究”在《全國第二屆水力學(xué)、水文水資源青年學(xué)術(shù)討論會》上獲優(yōu)秀論文獎(jiǎng)
1992年,論文“三門峽水庫水沙綜合調(diào)節(jié)優(yōu)化調(diào)度運(yùn)用的研究”獲河南省水力發(fā)電工程學(xué)會優(yōu)秀論文二等獎(jiǎng)
1991年,獲“黃河水利委員會八十年代優(yōu)秀大學(xué)畢業(yè)生”稱號
1991年,獲黃河水利委員會水利科學(xué)研究院院長二等獎(jiǎng)勵(lì)基金
1991年,論文“三門峽水庫優(yōu)化調(diào)度運(yùn)用的研究”在《第六次全國灰色系統(tǒng)學(xué)術(shù)研討會》上獲優(yōu)秀論文獎(jiǎng)
1990年,論文“黃河下游水庫防洪系統(tǒng)優(yōu)化調(diào)度的初步研究”在黃委會和河南省水利學(xué)會舉辦的《青年水利科技工作者演講會》上獲二等獎(jiǎng)
學(xué)術(shù)成果
期刊論文
【1】Wu, B.S. and Wang, G.Q., “Backwater Computation for Choking Flood Flows through Bridge Contractions,” Water International, 2005, 30(1), 69-75.
【2】Wu, B.S., Wang, G.Q., Ma, J. M., and Zhang, R., “Case Study: River Training and Its Effects on Fluvial Processes in the Lower Yellow River, China,” Journal of Hydraulic Engineering, ASCE, 2005, 131(2), 85-96.
【3】Wu, B.S. and Molinas, A., “Energy Losses and Threshold Conditions for Choking in Channel Contractions,” Journal of Hydraulic Research, IAHR, 2005, 43(2), 139-148.
【4】Wang, G.Q., Wu, B.S., and Wang, Z.Y., “Sedimentation problems and management strategies of Sanmenxia Reservoir, Yellow River, China,” Water Resources Research, 2005, 41(9), W0941710.1029/2004WR003919.
【5】Wu, B.S., Molinas, A., and Julien, P.Y., “Bed-Material Load Computations for Nouniform Sediments,” Journal of Hydraulic Engineering, ASCE, 2004, 130(10), 1002-1012.
【6】Wu, B.S., Wang, G.W., Wang, Z.Y., and Xia, J.Q., “Effect of Changes in Flow Runoff on the Elevation of Tongguan in Sanmenxia Reservoir,” Chinese Science Bulletin, 2004, 49(15), 1658-1664.
【7】Wu, B.S., Wang Z.Y., and Li, C.Z., “Yellow River Basin Management and Current Issues,” Journal of Geographical Sciences, 2004, 14(supplement), 29-37.
【8】Wang, G.Q., Wu, B.S., and Xia, J.Q., “Modeling of the Diversion Channel Closure for the Third Stage of the Three Gorges Project,” International Journal of Sediment Research, 2004, 19(1), 75-82.
【9】Li, P.C., Wu, B.S., Zhou, J.J., and Han, W.L., “Application of A Numerical Model of Solid-Liquid Hammer in Pipeline Transport,” Engineering Science, 2004, 2(3), 53-59.
【10】Molinas, A. and Wu, B.S., “Transport of Sediment in Large Sand-Bed Rivers,” Journal of Hydraulic Research, IAHR, 2003, 41(5), 549-555.
【11】Wu, B.S., Molinas, A, and Shu, A.P., “Fractional Transport of Sediment Mixtures,” International Journal of Sediment Research, 2003, 18(3), 232-247.
【12】Wu, B.S. and Molinas, A., “Choked Flows Through Short Contractions,” Journal of Hydraulic Engineering, ASCE, 2001, 127(8), 657-662.
【13】Molinas, A. and Wu, B.S., “Transport of Sediment in Large Sand-Bed Rivers,” Journal of Hydraulic Research, IAHR, 2001, 39(2), 135-146.
【14】Molinas, A., Wu, B.S., and Koester, R., “Debris Flow Simulation for Highway Cross Culverts,” Transportation Research Record, National Research Council, Transportation Research Board, 2001, 220-226.
【15】Molinas, A., and Wu, B.S., “Comparison of Fractional Bed-Material Load Computation Methods in Sand-Bed Channels,” Earth Surface Processes and Landforms, 2000, 25(10), 1045-1068.
【16】吳保生、鄧玥,“三門峽水庫河床縱剖面的調(diào)整變化”,水利學(xué)報(bào), 2005,36(5),549-554。
【17】吳保生、陳紅剛、馬吉明,“美國基西米河的生態(tài)恢復(fù)工程經(jīng)驗(yàn)與效果評價(jià)”,水利學(xué)報(bào),2005,36(4)。
【18】吳保生、鄧玥,“三門峽水庫河床縱剖面的調(diào)整變化”,水利學(xué)報(bào),2005年,2005,36(5)。
【19】吳保生、王光謙、王兆印、夏軍強(qiáng),“來水來沙對潼關(guān)高程的影響及變化規(guī)律”,科學(xué)通報(bào),2004,49(14),1461-1465。
【20】吳保生、陳紅剛、馬吉明,“美國基西米河渠化工程對河流生態(tài)環(huán)境的影響”,水利水電技術(shù),2004,35(9),13-16。
【21】吳保生、鄧玥、馬吉明,“格倫峽大壩人造洪水試驗(yàn)”,人民黃河,2004,(7),12-14。
【22】王兆印、吳保生、李昌志,“渭河下游是否已達(dá)到平衡?”,人民黃河,2004,26(4),16-18。
【23】吳保生、馬吉明、張仁、府仁壽,“水庫及河道整治對黃河下游游蕩性河道河勢演變的影響”,水利學(xué)報(bào),2003,(12),12-20。
【24】吳保生、張仁,“三門峽水庫建庫前潼關(guān)高程變化研究成果的比較分析”,泥沙研究,2004,(1),70-78。
【25】馬吉明、吳保生,“具有Riblets邊界面的粘彈性流體速度分布的試驗(yàn)研究”,水利學(xué)報(bào),2003,(1),17-20。
【26】吳保生、馬吉星,“床沙代表粒徑與輸移泥沙中值粒徑的關(guān)系”,泥沙研究,2002,(2),6-14。
【27】吳保生、張新民,馬吉明,“卡克水流現(xiàn)象的臨界判別條件”,水利學(xué)報(bào),2002,(8),12-20。
【28】吳保生,“過路涵洞設(shè)計(jì)中的泥石流模擬計(jì)算”,泥沙研究,2001,(4),34-40。
國際會議論文
【29】Wu, B.S. and Xia, J.Q., “Environmental Assessment and Sedimentation Management of Sanmenxia Reservoir.” 2005 IAHR Congress, Korea.
【30】Wu, B.S., Shi, C.W., Ma, J.M., and Chu, M.H., “Classification of Channel Patterns Based on Strong Equilibrium Sediment Transport Concept.” Proceedings of the Second International Yellow River Forum on Basin Management, 2005, Vol. III, 187-195.
【31】Zhang, C.C., Wu, B.S., and Yang, Y., “Correlations between Sediment Transport Capacity and Flow Intensity in the Lower Yellow River.” Proceedings of the Second International Yellow River Forum on Basin Management, 2005, Vol. I, 290-297.
【32】Deng, Y. and Wu, B.S., “Prototype Experiment of Erosion and Sedimentation in Sanmenxia Reservoir.” Proceedings of the Second International Yellow River Forum on Basin Management, 2005, Vol. III, 378-387.
【33】de Veriend, H., Zhou, J.J., Wang, Z.Y., Wu, B.S., Witerwerp, H., and van Maren, B., “Predictive Modeling of Sediment Transport and Morphology in the Lower Yellow River,” Proceedings of the Second International Yellow River Forum on Basin Management, 2005, Vol. III, 128-134.
【34】Wu, B.S. and Wang, Z.Y., “Impacts of Sanmenxia Dam and Management Strategies,” Proceedings of the International Conference on Hydraulics of Dams and River Structures, 2004, 213-227, Tehran, Iran.
【35】Wu, B.S., “Effect of Flow Changes on Sedimentation in Sanmenxia Reservoir,” Proceedings of the Ninth International Symposium on River Sedimentation, 2004, 931-937, Yichang, China.
【36】Xia, J.Q. and Wu, B.S., “Study on the Influence of Different Operational Modes of the Sanmenxia Reservoir on the Tongguan Elevation Using a 1D Mathematical Model” Proceedings of the Ninth International Symposium on River Sedimentation, 2004, 634-641,Yichang, China.
【37】Wu, B.S., “Channel Response to Changing Flow Conditions - A Case Study of the Yellow River,” Proceedings of the First International Conference on the Solutions of Water Shortage and Instream Flow Problem in Asia, Edited by G.W. Choi and K.H. Kim, 2003, 70-86.
【38】Wu, B.S., Ma, J.M., Zhang, B.S., and Ma, J.Y., “Morphological Response to River Training in the Lower Yellow River,” Proceedings of the First International Yellow River Forum on Basin Management, 2003, Vol. II, 381-391.
【39】Wu, B.S. “Backwater Computation for Choked Flows through Bridge Contractions,” Flood Defence u20192002: Proceedings of the Second International Conference on Flood Defence, Science Press New York Ltd., 2002, Vol. I, 470-468.
【40】Wu, B.S., “Limit Opening Ratio for Choking Flow Phenomenon,” Advances in Hydraulics Engineering and Water Engineering: Proceedings of the 13th IAHR-APD Congress, World Scientific, Singapore, 2002,Vol. I, 126-130.
【41】Wu, B.S., “Aspects of Mekong Hydrological Modeling with Reference to the Experience in China,” Proceedings of International Expert Meeting on Flood Forecasting for the Mekong River, 2002, Technical Support Division, Mkong River Commission Secretariat, Phnom Penh, Cambodia, 67-74.
【42】Wu, B.S., “Comparison of Fractional Sediment Transport Methods,” XXIX IAHR Congress Proceedings, Theme D: Hydraulics of Rivers, Water Works and Machinery, 2001, Vol. II, 336-342, Beijing, China.
主編和參編著作
【43】Wu, B.S., et al., “Flood Defence u20192002: Proceedings of the Second International Conference on Flood Defence.” Science Press New York Ltd., 2002, 1733p.
【44】Molinas, A. and Wu, B.S., “Useru2019s Primer for BRI-STARS (BRIdge Stream Tube model for Alluvial River Simulation).” Publication No. FHWA-RD-99-191, Federal Highway Administration, Turner-Fairbank Highway Research Center, McLean, Virginia, 2000, 43p.
【45】夏軍強(qiáng)、王光謙、吳保生,“游蕩型河流演變及其數(shù)值模擬”,中國水利水電出版社,2005。
【46】王興奎、邵學(xué)軍、王光謙、吳保生,“河流動力學(xué)”,科學(xué)出版社,2004。
【47】吳保生、王光謙,“江河治理與調(diào)水工程關(guān)鍵技術(shù)及其發(fā)展戰(zhàn)略”,2020年的中國工程技術(shù)發(fā)展研究,2004,中國科協(xié)。
【48】王光謙、吳保生,“第二章:泥沙學(xué)科前沿問題述評”,水利水電工程科學(xué)前沿,張楚漢主編,清華大學(xué)出版社,2002,34-54。