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《中國給水排水》2024年水環(huán)境保護與可持續(xù)發(fā)展大會暨 上海水業(yè)嘉年華
 
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朱志偉----浙江大學(xué) 教授 美國土木工程協(xié)會(ASCE)“Journal of Hydraulic Engineering”的副主編

放大字體  縮小字體 發(fā)布日期:2013-02-19  瀏覽次數(shù):787
核心提示: 朱志偉(市政工程研究所)
中國給水排水2024年城鎮(zhèn)污泥處理處置技術(shù)與應(yīng)用高級研討會(第十五屆)邀請函 (同期召開固廢滲濾液大會、工業(yè)污泥大會、高濃度難降解工業(yè)廢水處理大會)

中國給水排水2024年城鎮(zhèn)污泥處理處置技術(shù)與應(yīng)用高級研討會(第十五屆)邀請函 (同期召開固廢滲濾液大會、工業(yè)污泥大會、高濃度難降解工業(yè)廢水處理大會)
 

朱志偉


504F9朱志偉,教授,男,1965年出生,浙江寧波人,加拿大工程院院士、加拿大基金委(NSERC)市政排水領(lǐng)域的工業(yè)研究講席教授。畢業(yè)于上海交通大學(xué)船舶及海洋工程系的本科(1986)和碩士(1989),于1996年獲加拿大不列顛哥倫比亞大學(xué)(UBC)的土木工程博士學(xué)位,并于1997年起在加拿大的阿爾伯特大學(xué)的土木及環(huán)境工程系任教,2004年晉升為正教授。

朱志偉教授是可持續(xù)城市排水系統(tǒng)和可持續(xù)水電研究領(lǐng)域的國際頂尖專家,在應(yīng)對氣候變化挑戰(zhàn)和嚴格的環(huán)境法規(guī)要求的現(xiàn)代城市下水道設(shè)計和運行等方面作出了杰出的貢獻,在環(huán)境水力學(xué)、市政水力學(xué)、空氣/水/砂多相流、分層流動中的混合和擴散以及河流、河口、湖泊、水庫的水環(huán)境的模擬和治理方面有很深的造詣,承擔和主持完成了加拿大自然科學(xué)與工程研究基金委(NSERC)等多項項目的研究,總額累計超過5000萬人民幣,研究成果得到全世界的公認,并應(yīng)用于實際工程設(shè)計。朱志偉教授曾作為浙江大學(xué)永謙講座教授,主持過國家863、國家重大專項等相關(guān)課題的研究,積極推動了加拿大和中國在相關(guān)領(lǐng)域的合作研究。已培養(yǎng)研究生70余名,在國際頂尖刊物上發(fā)表SCI論文150余篇。


朱志偉(市政工程研究所)

 
   
姓名:朱志偉
職稱職務(wù):教授
 
電子郵箱:davidzhu@zju.edu.cn
個人主頁:
朱志偉教授的研究領(lǐng)域為環(huán)境水力學(xué),他是美國土木工程協(xié)會(ASCE)“Journal of Hydraulic Engineering”的副主編,曾任“Journal of Environmental Engineering and Science”的特邀主編,其主要研究方向和學(xué)術(shù)貢獻簡介如下:
(1)在河流、河口、湖泊、水庫的水環(huán)境的模擬和治理方面作了很多重要工作,并發(fā)表了數(shù)篇有影響的文章,曾獲美國土木工程協(xié)會的年度最佳論文獎。對水體中分層流動的特性和機理作了深入的研究、對分層流中的混合和擴散過程作了詳細的參述。關(guān)于污染物在河道水體的擴散,排污口的設(shè)計和優(yōu)化,底部淤泥將對水質(zhì)的影響和污染治理等方面,也作了很多研究工作。另外對于水/沙、水/氣二相流同樣作了很多機理性的研究。
(2)在市政水力學(xué)方向,對排污系統(tǒng)的水力學(xué)特性作了系統(tǒng)的研究,對其水力消能的機理,系統(tǒng)摻氣的特性方面作出了特出的貢獻。所參與的一個項目獲得了一項工程設(shè)計創(chuàng)新獎。其研究工作對于市政設(shè)施的設(shè)計、規(guī)范的發(fā)展有指導(dǎo)意義。
(3)研究水力發(fā)電和大壩對水生態(tài)和魚類的影響,包括取水口的布置,水庫分層取水和優(yōu)化,取水誘導(dǎo)的流場對魚類的生態(tài)影響,魚道的設(shè)計,大壩有關(guān)的水力消能的設(shè)計等。參與并領(lǐng)導(dǎo)了一個加拿大的團隊研究水力發(fā)電對水生態(tài)、水環(huán)境的影響,得到了加拿大科學(xué)基金會(NSERC),聯(lián)邦漁業(yè)部和多個省水電局的大力支持,是加拿大在該領(lǐng)域內(nèi)至今資助額最大的科研項目。該研究對于中國水電項目減少對水環(huán)境、水生態(tài)的影響會有一定的借鑒作用。
 
學(xué)歷:
學(xué)士(1986)上海交通大學(xué) 船舶及海洋工程
碩士(1989)上海交通大學(xué) 船舶及海洋工程
工程碩士(1991)University of British Columbia 土木工程(加拿大)
博士(1996)University of British Columbia土木工程(加拿大)
 
 
工作經(jīng)歷:
教授 (2010-)          浙江大學(xué)建筑工程學(xué)院
永謙講座教授 (2009-2012)浙江大學(xué)建筑工程學(xué)院
系副主任(2005-2007)   加拿大University of Alberta土木及環(huán)境工程系
教授 (2004-)          加拿大University of Alberta土木及環(huán)境工程系
客座教授 (2003-2004) 德國University of Karlsruhe
高訪學(xué)者 (2003)       英國University of Cambridge
副教授 (2001-2004)      加拿大University of Alberta土木及環(huán)境工程系
助理教授 (1997-2001)    加拿大University of Alberta土木及環(huán)境工程系
工程師(1997)          加拿大British Columbia 省水電局
研究人員(1997)        加拿大National Water Research Institute
 
獲獎及榮譽
  • 加拿大土木工程協(xié)會Keefer獎?wù)拢═homas C. Keefer Medal)(2010)
  • 省工程設(shè)計創(chuàng)新獎Consulting Engineers of Alberta (CEA) SHOWCASE AWARDS (2009)
  • 浙江大學(xué)永謙講座教授 (2009 – 2012)
  • 美國土木工程協(xié)會(Journal of Hydraulic Engineering)最佳論文獎(2003)
  • 德國洪堡研究獎學(xué)金 (Research Fellowship)(2003-2004)
 
研究領(lǐng)域:
1、環(huán)境水力學(xué)
2、市政水力學(xué)
3、水/沙、水/氣二相流
4、分層流動中的混合和擴散
5、魚道的設(shè)計
6、河流、河口、湖泊、水庫的水環(huán)境的模擬和治理
7、水力發(fā)電和大壩對水生態(tài)和魚類的影響
1.   Azimi, A.H., Rajaratnam, N. and Zhu, D.Z. (2012), “A note on sharp-crested weirs and weirs of finite crest length”, Can. J. Civil Engineering, accepted.
2.   Guo, S., Zhang, T.Q., Zhang, Y.P., Zhu, D.Z. (2012), “An approximate solution for two-dimensional groundwater infiltration in sewer systems”, Water Science and Technology, accepted.
3.   Cai, J., Zhu, D.Z., Rajaratnam, N. (2012), “Observations on sand jets in viscoplastic fluids”, Theoretical & Applied Mechanics Letters, 2, 052001, doi:10.1063/2.1205201.
4.   Azimi, A.H., Rajaratnam, N. and Zhu, D.Z. (2012), “Discharge characteristics of weirs of finite crest length with upstream and downstream ramps”, ASCE Journal of Irrigation and Drainage Engineering, accepted.
5.   Baki, A.B.M., Zhu, D.Z., Courtice, G. (2012), “Hydraulic Geometry and Resistance to Flow in Small Headwater Streams in the Northwest Territories, Canada”, Can. J. Civil Engineering, accepted.
6.   Azimi, A.H., Zhu, D.Z. and Rajaratnam, N. (2012), “Computational investigation of vertical slurry jets in water”, International Journal of Multiphase Flow, Vol. 47, 94 – 114.  
7.   Langford, M., Daviau, J.L., Zhu, D.Z. (2012) “Design of a centralized regional water distribution system: A case study”, Can. J. Civil Engineering, 39(7), 801-811.
8.   Baki, A.B.M., Zhu, D.Z., Hulsman, M.F., Lunn, B.D. and Tonn, W.M. (2012), “The Hydrological Characteristics of a –292. Stream within an Integrated Framework of Lake-Stream Connectivity in the Lac de Gras Watershed, N.W.T., Canada”, Can. J. Civil Engineering, 39(3): 279
9.   Azimi, A.H., Zhu, D.Z. and Rajaratnam, N. (2012), “Experimental study of sand jet front in water”, International Journal of Multiphase Flow, –37. Vol. 40, 19
10.Camino, G.A., Zhu, D.Z., Rajaratnam, N (2012) “Energy dissipation by jet diffusion inside a confined chamber”, Journal of Hydraulic Research, Vol. 50(1), 121-128.
11.Fouli, H. and Zhu, D.Z. (2011). “Dynamics of the outflow and its effect on the hydraulics of two-layer exchange flows”, Theoretical & Applied Mechanics Letters, 1, 062003 (doi: 10.1063/2.1106203).
12.Thiem, J.D., T.R. Binder, J.W. Dawson, P. Dumont, D. Hatin, C. Katopodis, D.Z. Zhu, S. J. Cooke (2011). “Behaviour and passage success of upriver-migrating lake 1 sturgeon in a vertical slot fishway on the Richelieu River, Quebec”, Endangered Species Research, Vol. 15, 1-11.
13.Smokorowski, K.E., and others (2011) NSERC’s HydroNet: A national research network to promote sustainable hydropower and healthy aquatic ecosystems, Fisheries, American Fisheries Society, 36(10), 480-488.
14.Islam, MD and Zhu, D.Z. (2011), “A numerical study on confined wall jets in a shallow basin”, Journal of Hydraulic Research, 49(5), 595-600.
15.Azimi, A.H., Zhu, D.Z. and Rajaratnam, N. (2011), “Numerical study of sand jets in water”, ASCE Journal of Engineering Mechanics, Vol. 137(12), 822-834.
16.Zhang, W., Zhu, D.Z. (2011)Transverse mixing in an unregulated natural river”, ASCE Journal of Hydraulic Engineering, Vol. 137(11), 1426–1440.
17.Bhuiyan, F., Habibzadeh, A., Rajaratnam, N., Zhu, D.Z. (2011), “Reattached turbulent offset jets on rough bed with shallow tailwater”, ASCE Journal of Hydraulic Engineering, Vol. 137(12), 1636–1648.
18.Fouli, H. and Zhu, D.Z. (2011). “Interfacial waves in two-layer exchange flows downslope of a bottom sill”, Journal of Fluid Mechanics, Vol. 680, 194-224.
19.Zhang, W., Zhu, D.Z. (2011)Near-field mixing downstream of a multiport diffuser in a shallow river”, ASCE Journal of Environmental Engineering, Vol. 137(4), 230-240.
20.Camino, G.A., Zhu, D.Z., Rajaratnam, N (2011) “Hydraulics of stacked drop manholes”, ASCE Journal of Irrigation and Drainage Engineering, Vol. 137(8), 537-552.
21.Islam, MD and Zhu, D.Z. (2011), “Flow upstream of two-dimensional intakes”, ASCE Journal of Hydraulic Engineering, Vol. 137(1), 129-134.
22.Islam, MD and Zhu, D.Z. (2011), “Anti-diffusion in central difference scheme for steady-state transport equation”, Progress in Computational Fluid Dynamics, Vol. 11(1), 1-5.
23.Cai, J., Hall, N.A, Elenany, M., Zhu, D.Z., Rajaratnam, N. (2010), “Sand jets in air”, ASCE Journal of Engineering Mechanics, Vol. 136(9),1181-1186.
24.Hall, N.A, Elenany, M., Zhu, D.Z., Rajaratnam, N. (2010), “Experimental study of sand and slurry jets in water”, ASCE Journal of Hydraulic Engineering, Vol. 136(10), 727-738.   
25.Rajaratnam, N., Zhu, D.Z., Rai, S.P. (2010) “Turbulence measurements in the impinging region of a circular jet”, Can. J. Civil Engineering, 37(5):782-785.
26.Bhuiyan, F., N. Rajaratnam, D.Z. Zhu (2010), “An experimental study of mounds formed by sand dumping in channel Flow”, Journal of Hydraulic Research, Vol. 48(3), 283-291.
27.Valentine, E., Kronebusch, K., Zhu, D.Z., Rajaratnam, N., Lodewyk, S., Cairns, J., Chan, S., and Zhou, F., (2010). “Combined sewer overflow over an oblique weir at Rat Creek in Edmonton”, Can. J. Civil Engineering, 37(3): 477-488.
28.Shammaa, Y. and Zhu, D.Z. (2010). “Experimental study on selective withdrawal in a two-layer reservoir using a temperature-control curtain”, ASCE Journal of Hydraulic Engineering, 136(4), 234-246.
29.Camino, G.A., Zhu, D.Z., Rajaratnam, N. and Shome, M. (2009) “Use of a stacked drop manhole for energy dissipation: A case study in Edmonton”, Can. J. Civil Engineering, 36(6), 1037-1050. Received Canadian Society for Civil Engineering Thomas Keefer Medal in 2009.
30.Shammaa, Y, Zhu, D.Z., Rajaratnam, N. (2009), “Flow field in a rectangular basin with a line inlet and a circular outlet”, ASCE Journal of Hydraulic Engineering, Vol. 135(10), 856-864.
31.Dow, K., Steffler, P.M. and Zhu, D.Z., (2009). “Intermediate field mixing of wastewater effluent in the North Saskatchewan River”, Journal of Hydraulic Engineering, ASCE, Vol. 135(1), 1-12.
32.Negretti, M.E., Zhu, D.Z., and Jirka, G.H., (2008). “The effect of bottom roughness in two-layer flows down a slope”, Dynamics of Atmospheres and Oceans, Vol. 45/1-2, 46-68.
33.Lima-Neto, E., Zhu, D.Z., Rajaratnam (2008)Bubbly jet in stagnant water”, International Journal of Multiphase Flow, Vol. 34, 1130-1141.
34.Lima-Neto, E., Zhu, D.Z., Rajaratnam (2008)Horizontal injection of gas-liquid mixtures in a water tank”, Journal of Hydraulic Engineering, ASCE, Vol. 134(12), 1722-1731
35.Fouli, H. and Zhu, D.Z. (2008). “Transition of two-layer stratified flow from theslopeof bottom topography to a horizontal channel”, Atmosphere - Ocean, Vol. 46(4), 391-404.
36.Lima-Neto, E., Zhu, D.Z., Rajaratnam (2008)Air Injection in Water with Different Nozzles”, ASCE Journal of Environmental Engineering, Vol. 134(4), 283-294.
37.Lima-Neto, E., Zhu, D.Z., Rajaratnam (2008)Effect of tank size and geometry on the flow induced by circular bubble plumes and water jets”, ASCE Journal of Hydraulic Engineering, Vol. 134(6), 833-842
38.Zhao, C.H., Zhu, D.Z. and N. Rajaratnam (2008). “Computational and experimental study of surcharged flow at a 90-degree combining sewer junction". ASCE Journal of Hydraulic Engineering, Vol. 134(6), 688-700.
39.Negretti, M.E., Zhu, D.Z., and Jirka, G.H., (2007) “Barotropically induced interfacial waves in stratified exchange flows down a smooth sill”, Journal of Fluid Mechanics, Vol. 592, 
135-154.
40.Lima-Neto, E., Zhu, D.Z., Rajaratnam, N., Yu, T., Spafford, M., and McEachern, P. (2007)Dissolved oxygen downstream of an effluent outfall in an ice-covered river: modeling and remediation”, ASCE Journal of Environmental Engineering, Vol. 133(11), 1051-1060
41.Yu, J.D., Liu, H. and Zhu, D.Z. (2007). “Numerical simulation of gravity flows for two-layer stratified fluid”. Chinese Quarterly of Mechanics, 2007(4), 539-548.
42.Zhao, C.H., Zhu, D.Z. and N. Rajaratnam (2006). "Experimental study of surcharged flow at combining sewer junctions." ASCE Journal of Hydraulic Engineering, Vol. 132(12), 1259-1271. 
43.Mustaffa, Z., N. Rajaratnam and D.Z. Zhu. (2006) “An experimental study of flow into orifices and grating inlets on streets”. Can. J. Civil Engineering, Vol. 33(7), 837-845.
44.Liu, M., Rajaratnam, N, and Zhu, D.Z. (2006) “Mean flow and turbulence structure in vertical slot fishways”. Journal of Hydraulic Engineering, ASCE, 132(8), 765-777.
45.Zhao, C., Zhu, D.Z., Sun, S. and Liu, Z., (2006) “An experimental study of a vortex dropshaft”, Journal of Hydraulic Engineering, ASCE, Vol. 132(1), 61-68. 
46.Shammaa, Y, Zhu, D.Z., Rajaratnam, N. (2005) “Flow upstream of orifices and sluice gates”, Journal of Hydraulic Engineering, ASCE, Vol. 131(2), 127-133.
47.Zhao, C., Zhu, D.Z, and Rajaratnam, N. (2004). “Supercritical sewer flow at a combining junction: a model study of Edworthy Trunk Junction, Calgary, Alberta”, Journal of Environmental Engineering and Science, Vol. 3(5), 343-353. 
48.Zhu, D.Z., and Smith, D.W. (2004) “Introduction to Environmental Hydraulics”. Journal of Environmental Engineering and Science, 3(5), 1-2.
49.M. Liu, Rajaratnam, N., Zhu, D.Z. (2004) “Turbulence structure of hydraulic jumps of low Froude numbers”. Journal of Hydraulic Engineering, ASCE, Vol. 130(6), 511-520.
50.Morin, V.M., Zhu, D.Z. and Loewen, M.R. (2004). “Supercritical exchange flow down a sill”, Journal of Hydraulic Engineering, ASCE, Vol. 130(6), 521-531.
51.Zhu, D.Z. (2003) “Hydraulic controls of exchange flows”, Journal of Hydraulic Research, IAHR, Vol. 41(5), 503-511.
52.Zhu, D.Z., Fouli, H. and Okyere, Y.A. (2002). "Exchange flow through an opening", Journal of Hydraulic Research, IAHR, Vol. 40(3), 341-350.
53.Zhu, D.Z. (2002) “Control curves for two-layer flows”, Journal of Hydraulic Engineering, ASCE, Vol. 128(1), 113-116. Received ASCE Journal of Hydraulic Engineering Best Technical Note Award.
54.Shammaa, Y., Zhu, D.Z., Gyurek, L.L. and Labatiuk, C.W. (2002). “Effectiveness of dry ponds for TSS removal”, Canadian Journal of Civil Engineering, Vol. 29(2), 316-324.
55.Shammaa, Y. and Zhu, D.Z. (2001) “Techniques for controlling total suspended solids in stormwater runoff”, Canadian Water Resources Journal, Vol. 26(3), 1-17.
56.Zhu, D.Z. and Lawrence, G.A. (2001). "Holmboe’s instability in exchange flows", Journal of Fluid Mechanics, U.K., Vol. 429, 391-409.  
57.Froese, T., Zhu, D. and Bhat, S. (2001). "WWW courseware in applied science: cases and lessons". Computer Applications in Engineering Education, John Wiley & Sons, Vol. 9(2), 63-77.
58.Liu, M. and Zhu, D.Z. (2000). "Study of tunnel outlet head-loss coefficient", Canadian Journal of Civil Engineering, Vol. 27(6), 1306-1310.
59.Zhu, D.Z. and Lawrence, G.A. (2000). "Hydraulics of exchange flows", Journal of Hydraulic Engineering, ASCE, Vol. 126 (12), 921-928.
60.Hamblin, P.F., Zhu, D.Z., Chiocchio, F., He, C. and Charlton, M.N. (2000). "Monitoring suspended sediment plumes by optical and acoustical methods with application to sand capping", Canadian Journal of Civil Engineering, Vol. 27(1), 125-137.
61.Zhu, D.Z. and Lawrence, G.A. (1998). "Non-hydrostatic effects in layered shallow water flows", Journal of Fluid Mechanics, U.K. Vol. 355, 1-16.
62.Lawrence, G.A., Haigh, S.P. and Zhu, D.Z. (1998). "In search of Holmboe's instability", Coastal and Estuarine Studies, AGU, Vol. 54, 281-289.
63.Zhu, Z. and Lawrence, G.A. (1996). "Exchange flow through a channel with an underwater sill", Dynamics of Atmospheres and Oceans, Elsevier Science. Vol. 24, 153-161.
 
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