鐘強(中國農業大學水利與土木工程學院副教授)

鐘強,男,四川人,中共黨員,博士,中國農業大學水利與土木工程學院副教授。

基本介紹

  • 中文名:鐘強
  • 畢業院校:清華大學
  • 學位/學歷:博士
  • 專業方向:水力學及河流動力學
  • 任職院校:中國農業大學
研究領域,人物經歷,教育經歷,工作經歷,學術成果,專著教材,發表論文,授權專利,學術報告,學術合作,學術兼職,

研究領域

1.明渠湍流相干結構的三維形式、形成機制及不同尺簽臘晚遙度間的相互作用;
2.湍流相干結構與環境過程的相互作用;
3.野外與實驗室內複雜流動中的矢量和標量場陵享組驗測量技術研發.

人物經歷

教育經歷

2008.09-2014.07:清華大勸協嚷學水利水電工程系,工學博士,水力學及危民放河流動力學
2005.07-2008.07:四川大學水利水電學院,工學學士,水利水電工程
其中2011.09-2012.04:Arizona State University,公派聯合培養

工作經歷

2018.01-至今,中國農業大學大學水利水利與土木工程學院,副教授
2017.08-2017.12,中國農業大學大學水利歸匪水利與土木工程學院,講師
2014.07-2017.07,清華大學水利水電工程系,博士後
其中:2014.09-2016.09,University of Notre Dame,Postdoctoral Research Associate

學術成果

專著教材

(1)鐘強,劉春晶,陳槐,陳啟剛,王興奎.明渠湍流數據分析方法.科學出版社汗才鑽(2018年出版);
(2)陳啟剛,陳槐,鐘強,李丹勛.高頻粒子圖像測速系統原理與實踐付習犁.清華大學出版社,北京, 2017.

發表論文

(1) Zhong Qiang, Hussain Fazle, Fernando J.F.S*. (2018) Quantification of turbulent mixing in colliding gravity currents. Journal of Fluid Mechanics, 851:125-147;
(2) Balasubramanian Sridhar*, Zhong Qiang. (2018) Entrainment and mixing in lock-exchange gravity currents using simultaneous velocity-density measurements. Physics of Fluids, 30(5):056601;
(3) Roni Hilel Goldshmid, Stef L Bardoel, Christopher M Hocut, Qiang Zhong, Dan Liberzon, Harindra JS Fernando*. (2018) Separation of upslope flow over a plateau. Atmosphere, 9(5):165.
(4) Miao Wei, Cao Liekai, Zhong Qiang, Li Danxun*. (2018) Influence of the time interval on image-based measurement of bed-load transport. Journal of Hydraulic Research, 56(4):1-9;
(5) Wang Hao, Zhong Qiang*, Wang Xingkui. (2017) Quantitative characterization of streaky structures in open channel flow. Journal of Hydraulic Engineering-ASCE, 143 (10);
(6) Chen Qi-gang, Qi Mei-lan, Zhong Qiang*, Li Danxun. (2017) Experimental study on the multimodal dynamics of the turbulent horseshoe vortex system around a circular cylinder. Physics of Fluids, 29(1):015106;
(7) Zhong Qiang, Chen Qi-gang, Chen Huai, Li Dan-xun*. (2017) A Topological Method for Vortex Identification in Turbulent Flows. Fluid Dynamics Research, 49 (1) :015509;
(8) Zhong Qiang, Chen Qi-gang, Wang Hao, Li Dan-xun*, Wang Xing-kui. (2016) Statistical analysis of turbulent super-streamwise vortices based on observations of streaky structures near the free surface in the smooth open channel flow. Water Resources Research, 52(5):3563-3578;
(9) Zhong Qiang, Li Dan-xun*, Chen Qi-gang, Wang Xing-kui. (2015) Coherent structures and their interactions in smooth open channel flows. Environmental Fluid Mechanics, 15(3): 653-672;
(10) Chen Qi-gang, Zhong Qiang, Qi Mei-lan*, Wang Xing-kui. (2015) Comparison of vortex identification criteria for planar velocity fields in wall turbulence. Physics of Fluids, 27(8):085101;
(11) Chen Huai, Zhong Qiang, Wang Xing-kui, Li Dan-xun*. (2014) Reynolds number dependence of flow past a shallow open cavity. Science China-Technological Sciences, 57(11):2161-2171;
(12) Chen Qi-gang, Zhong Qiang, Li Dan-xun*, Wang Xing-kui. (2014) An improved swirling-strength criterion for identifying spanwise vortex in wall turbulence. Journal of Turbulence, 15(2):71-87;
(13) Chen Huai, Adrian Ronald J. *, Zhong Qiang, Wang Xing-kui. (2014) Analytic solutions for three dimensional swirling strength in compressible and incompressible flows. Physics of Fluids, 26(8): 081701;
(14) Chen Qi-gang, Adrian Ronald J. *, Zhong Qiang, Li Dan-xun, Wang Xing-kui. (2014) Experimental study on the role of spanwise vorticity and vortex filaments in the outer region of open channel flow. Journal of Hydraulic Research, 52(4):476-489;
(15) Li Dan-xun*, Zhong Qiang, Yu Ming-zhong, Wang Xing-kui. (2013) Large-scale particle tracking velocimetry with multi-channel CCD cameras. International Journal of Sediment Research, 28(1):103-110;
(16) Li Dan-xun*, Lin Qiu-sheng, Zhong Qiang, Wang Xing-kui. (2013) Bias errors induced by concentration gradient in sediment-laden flow measurement with PTV. Journal of Hydrodynamics, 24(5):668–674;
(17) Zhong Qiang, Li Dan-xun*, Chen Qi-gang, Wang Xing-kui. (2012) Evaluation of the shading method for reducing image blooming in the PIV measurement of open channel flows. Journal of Hydrodynamics, 24(2):184-192;
(18) Li Dan-xun*, Muste Marian, Zhong Qiang, Wang Xing-kui. (2012) An analytical study on turbulence with mixed-flow model and two-phase model. International Journal of Sediment Research, 27(2):235–239;
(19) Li Dan-xun*, Wang Xing-kui, Zhong Qiang. (2010) Bias errors induced by cross-talk in two-phase flow measurements. Journal of Hydraulic Research, 48(2):250-254;
(20)鐘強,陳啟剛,曹列凱,李丹勛*,王興奎. (2015)高壩泄洪水面曲面及流速場的原型測量方法.水科學進展, 26(6):829-836;
(21)苗蔚,陳啟剛,李丹勛*,鐘強. (2015)泥沙起動機率的高速攝影測量方法.水科學進展, 26(5):698-706;
(22)陳槐,鐘強,李丹勛,王興奎*. (2014)雷諾數對空腔水流時均結構的影響.水利學報, 45(1):65-71;
(23)鐘強,王興奎*,苗蔚,李丹勛. (2014)高解析度粒子示蹤測速技術在光滑明渠紊流黏性底層測量中的套用.水利學報, 45(6):829-836;
(24)鐘強,陳啟剛,李丹勛*,王興奎. (2013)明渠湍流橫向渦旋的尺度與環量特徵.四川大學學報(工程科學版), 45(S2): 66-70;
(25)鐘強,陳啟剛,王興奎*,李丹勛. (2013)提高PIV片光源質量的研究.實驗力學, 28(6): 692-698;
(26)陳槐,鐘強,王興奎*,任海濤. (2013)不同雷諾數下空腔流的流動特性.四川大學學報(工程科學版), 45(S2): 14-19;
(27)鐘強,李丹勛,陳啟剛,王興奎*. (2012)明渠湍流中的主要相干結構模式.清華川大學學報(自然科學版), 45(S2): 66-70;
(28)陳啟剛,鐘強,李丹勛,王興奎. (2012)明渠彎道水流平均運動規律試驗研究.水科學進展, 23(3):369-375;
(29)陳啟剛,李丹勛*,鐘強,王興奎. (2012)基於模式匹配法的明渠紊流渦結構分析.水科學進展, 24(1):95-102;
(30)陳啟剛,李丹勛*,鐘強,王興奎. (2012)粒子拖尾長度對高頻DPIV測量誤差的影響.實驗流體力學, 25(6):77-81;
(31)王龍,李丹勛,楊勝發,鐘強,王興奎*. (2009)採樣頻率及樣本容量對明渠紊流統計值的影響.水科學進展, 20(5):626-631;
(32)王璟玉,張立勇*,鐘強,王勇威,劉玉琨. (2009)高強混凝土的單軸抗壓力學性能試驗研究.建材世界, 30(1): 34-37;
(33)鄧明楓,鐘強,張立勇*,王勇威,劉玉琨. (2008)高性能混凝土抗沖磨性能試驗研究.混凝土, 220(2): 82-86;
會議論文
(1)楊雨晨,江信寬,鄧兆宇,鄭楓川,鐘強. (2018)重力流頭部運動速度實驗研究.首屆中國空氣動力學大學論文集, CARS-01-2018-039.
(2) Zhong Qiang. (2013). Spanwise vortices and large-scale structures in smooth open channel flows. Proceeding of 35th IAHR World Congress, A10318.

授權專利

(1)鐘強,段炎沖,李丹勛,曹列凱,陳啟剛,王興奎.基於片光掃描粒子圖像的三維流場高頻測量裝置及其方法.公開號: CN104133078A,授權日期: 2016-08-17;
(2)鐘強,李丹勛,楊文俊,陳啟剛,王興奎.一種天然河流中浮泥流變參數原位實時測量裝置及其方法.公開號: CN104155211A,授權日期: 2016-06-29;
(3)鐘強,陳啟剛,李丹勛,王興奎.一種測量明渠紊流粘性底層流速的方法及裝置.公開號: CN103808958A,授權日期: 2016-04-20;
(4)鐘強,楊文俊,李丹勛,陳啟剛,王興奎.一種天然河流中泥沙濃度級配原位實時測量裝置及其方法.公開號: CN103969171A,授權日期: 2016-02-10;
(5)胡江,鐘強,任海濤,王興奎.一種泥沙淤積物在大水壓力下乾容重變化的試驗裝置及其試驗方法.公開號: CN103558121A,授權日期: 2015-07-15;
(6)陳啟剛,鐘強,李丹勛,王興奎.一種渾水壓強測量裝置.公開號: CN103528748A,授權日期: 2015-06-24;
(7)鐘強,姚仕明,李丹勛,陳啟剛,王興奎.一種含沙濃度和渾水流速垂線分布的同步實時測量裝置.公開號: CN103134942A,授權日期: 2015-04-15;
(8)王興奎,鐘強,陳啟剛,李丹勛.一種用於流速測量的高頻圖像採集系統.公開號: CN102393193A,授權日期: 2013-05-01;

學術報告

邀請報告
(1) 2018年8月異重流中的湍流摻混(第四屆錢寧泥沙青年學術沙龍特邀短報告).邀請人:傅旭東教授,清華大學.
(2) 2017年6月現代水流量測技術:原理與套用.邀請人:易雨君副教授,北京師範大學.
(3) 2017年3月現代水流量測技術:原理與套用.邀請人:楊文俊教授,長江科學院.
(4) 2014年12月Experimental Study on Diverse Scale Coherent Structures in Open Channel Flows (the Environmental Fluid Dynamics Lecture Series Presents a Seminar).邀請人: Harindra J.S. Fernando教授, University of Notre Dame;
(5) 2014年7月明渠湍流中的相干結構.邀請人:楊勝發教授,重慶交通大學.
會議報告
(1) 2018年8月首屆中國空氣動力學大學:重力流頭部運動速度實驗研究.
(2) 2018年8月第四屆錢寧泥沙青年學術沙龍:異重流中的湍流摻混.
(3) 2015年11月American Physical Society 68th Annual DFD Meeting: Mixing Induced by Colliding Gravity Currents.
(4) 2015年10月5th Investigator Meeting for the Mountain Terrain Atmospheric Modeling and Observations (MATERHORN) Program: Laboratory studies on colliding gravity currents;
(5) 2013年9月35th IAHR World Congress: Spanwise and large-scale structures in smooth open channel flow. (Finals of John F. Kennedy Student Paper Competition)
(6) 2013年6月第6屆全國水力學與水利信息學大會: Population trends of spanwise vortices in smooth open channel flows.
(7) 2012年5月第314屆清華大學博士生論壇:明渠湍流相干結構的主要模式.
研討會
(1) 2015年10月5th Investigator Meeting for the Mountain Terrain Atmospheric Modeling and Observations (MATERHORN) Program, Notre Dame, IN, USA;
(2) 2014年9月Workshop on Microscale Modeling of Complex-Terrain Flows, Notre Dame, IN, USA;
(3) 2014年7月4th International PIV Challenge (participant of Case B), Lisbon, Portugal.

學術合作

(1) 2018.08.13-2018.08.15, Fazle Hussain, Texas Tech University教授,美國工程院院士.邀請方式:順訪;邀請單位:中國農業大學水利與土木工程學院.

學術兼職

1.期刊審稿
(1) Environmental Fluid Mechanics
(2) Journal of Hydrodynamics
(5) Wang Hao, Zhong Qiang*, Wang Xingkui. (2017) Quantitative characterization of streaky structures in open channel flow. Journal of Hydraulic Engineering-ASCE, 143 (10);
(6) Chen Qi-gang, Qi Mei-lan, Zhong Qiang*, Li Danxun. (2017) Experimental study on the multimodal dynamics of the turbulent horseshoe vortex system around a circular cylinder. Physics of Fluids, 29(1):015106;
(7) Zhong Qiang, Chen Qi-gang, Chen Huai, Li Dan-xun*. (2017) A Topological Method for Vortex Identification in Turbulent Flows. Fluid Dynamics Research, 49 (1) :015509;
(8) Zhong Qiang, Chen Qi-gang, Wang Hao, Li Dan-xun*, Wang Xing-kui. (2016) Statistical analysis of turbulent super-streamwise vortices based on observations of streaky structures near the free surface in the smooth open channel flow. Water Resources Research, 52(5):3563-3578;
(9) Zhong Qiang, Li Dan-xun*, Chen Qi-gang, Wang Xing-kui. (2015) Coherent structures and their interactions in smooth open channel flows. Environmental Fluid Mechanics, 15(3): 653-672;
(10) Chen Qi-gang, Zhong Qiang, Qi Mei-lan*, Wang Xing-kui. (2015) Comparison of vortex identification criteria for planar velocity fields in wall turbulence. Physics of Fluids, 27(8):085101;
(11) Chen Huai, Zhong Qiang, Wang Xing-kui, Li Dan-xun*. (2014) Reynolds number dependence of flow past a shallow open cavity. Science China-Technological Sciences, 57(11):2161-2171;
(12) Chen Qi-gang, Zhong Qiang, Li Dan-xun*, Wang Xing-kui. (2014) An improved swirling-strength criterion for identifying spanwise vortex in wall turbulence. Journal of Turbulence, 15(2):71-87;
(13) Chen Huai, Adrian Ronald J. *, Zhong Qiang, Wang Xing-kui. (2014) Analytic solutions for three dimensional swirling strength in compressible and incompressible flows. Physics of Fluids, 26(8): 081701;
(14) Chen Qi-gang, Adrian Ronald J. *, Zhong Qiang, Li Dan-xun, Wang Xing-kui. (2014) Experimental study on the role of spanwise vorticity and vortex filaments in the outer region of open channel flow. Journal of Hydraulic Research, 52(4):476-489;
(15) Li Dan-xun*, Zhong Qiang, Yu Ming-zhong, Wang Xing-kui. (2013) Large-scale particle tracking velocimetry with multi-channel CCD cameras. International Journal of Sediment Research, 28(1):103-110;
(16) Li Dan-xun*, Lin Qiu-sheng, Zhong Qiang, Wang Xing-kui. (2013) Bias errors induced by concentration gradient in sediment-laden flow measurement with PTV. Journal of Hydrodynamics, 24(5):668–674;
(17) Zhong Qiang, Li Dan-xun*, Chen Qi-gang, Wang Xing-kui. (2012) Evaluation of the shading method for reducing image blooming in the PIV measurement of open channel flows. Journal of Hydrodynamics, 24(2):184-192;
(18) Li Dan-xun*, Muste Marian, Zhong Qiang, Wang Xing-kui. (2012) An analytical study on turbulence with mixed-flow model and two-phase model. International Journal of Sediment Research, 27(2):235–239;
(19) Li Dan-xun*, Wang Xing-kui, Zhong Qiang. (2010) Bias errors induced by cross-talk in two-phase flow measurements. Journal of Hydraulic Research, 48(2):250-254;
(20)鐘強,陳啟剛,曹列凱,李丹勛*,王興奎. (2015)高壩泄洪水面曲面及流速場的原型測量方法.水科學進展, 26(6):829-836;
(21)苗蔚,陳啟剛,李丹勛*,鐘強. (2015)泥沙起動機率的高速攝影測量方法.水科學進展, 26(5):698-706;
(22)陳槐,鐘強,李丹勛,王興奎*. (2014)雷諾數對空腔水流時均結構的影響.水利學報, 45(1):65-71;
(23)鐘強,王興奎*,苗蔚,李丹勛. (2014)高解析度粒子示蹤測速技術在光滑明渠紊流黏性底層測量中的套用.水利學報, 45(6):829-836;
(24)鐘強,陳啟剛,李丹勛*,王興奎. (2013)明渠湍流橫向渦旋的尺度與環量特徵.四川大學學報(工程科學版), 45(S2): 66-70;
(25)鐘強,陳啟剛,王興奎*,李丹勛. (2013)提高PIV片光源質量的研究.實驗力學, 28(6): 692-698;
(26)陳槐,鐘強,王興奎*,任海濤. (2013)不同雷諾數下空腔流的流動特性.四川大學學報(工程科學版), 45(S2): 14-19;
(27)鐘強,李丹勛,陳啟剛,王興奎*. (2012)明渠湍流中的主要相干結構模式.清華川大學學報(自然科學版), 45(S2): 66-70;
(28)陳啟剛,鐘強,李丹勛,王興奎. (2012)明渠彎道水流平均運動規律試驗研究.水科學進展, 23(3):369-375;
(29)陳啟剛,李丹勛*,鐘強,王興奎. (2012)基於模式匹配法的明渠紊流渦結構分析.水科學進展, 24(1):95-102;
(30)陳啟剛,李丹勛*,鐘強,王興奎. (2012)粒子拖尾長度對高頻DPIV測量誤差的影響.實驗流體力學, 25(6):77-81;
(31)王龍,李丹勛,楊勝發,鐘強,王興奎*. (2009)採樣頻率及樣本容量對明渠紊流統計值的影響.水科學進展, 20(5):626-631;
(32)王璟玉,張立勇*,鐘強,王勇威,劉玉琨. (2009)高強混凝土的單軸抗壓力學性能試驗研究.建材世界, 30(1): 34-37;
(33)鄧明楓,鐘強,張立勇*,王勇威,劉玉琨. (2008)高性能混凝土抗沖磨性能試驗研究.混凝土, 220(2): 82-86;
會議論文
(1)楊雨晨,江信寬,鄧兆宇,鄭楓川,鐘強. (2018)重力流頭部運動速度實驗研究.首屆中國空氣動力學大學論文集, CARS-01-2018-039.
(2) Zhong Qiang. (2013). Spanwise vortices and large-scale structures in smooth open channel flows. Proceeding of 35th IAHR World Congress, A10318.

授權專利

(1)鐘強,段炎沖,李丹勛,曹列凱,陳啟剛,王興奎.基於片光掃描粒子圖像的三維流場高頻測量裝置及其方法.公開號: CN104133078A,授權日期: 2016-08-17;
(2)鐘強,李丹勛,楊文俊,陳啟剛,王興奎.一種天然河流中浮泥流變參數原位實時測量裝置及其方法.公開號: CN104155211A,授權日期: 2016-06-29;
(3)鐘強,陳啟剛,李丹勛,王興奎.一種測量明渠紊流粘性底層流速的方法及裝置.公開號: CN103808958A,授權日期: 2016-04-20;
(4)鐘強,楊文俊,李丹勛,陳啟剛,王興奎.一種天然河流中泥沙濃度級配原位實時測量裝置及其方法.公開號: CN103969171A,授權日期: 2016-02-10;
(5)胡江,鐘強,任海濤,王興奎.一種泥沙淤積物在大水壓力下乾容重變化的試驗裝置及其試驗方法.公開號: CN103558121A,授權日期: 2015-07-15;
(6)陳啟剛,鐘強,李丹勛,王興奎.一種渾水壓強測量裝置.公開號: CN103528748A,授權日期: 2015-06-24;
(7)鐘強,姚仕明,李丹勛,陳啟剛,王興奎.一種含沙濃度和渾水流速垂線分布的同步實時測量裝置.公開號: CN103134942A,授權日期: 2015-04-15;
(8)王興奎,鐘強,陳啟剛,李丹勛.一種用於流速測量的高頻圖像採集系統.公開號: CN102393193A,授權日期: 2013-05-01;

學術報告

邀請報告
(1) 2018年8月異重流中的湍流摻混(第四屆錢寧泥沙青年學術沙龍特邀短報告).邀請人:傅旭東教授,清華大學.
(2) 2017年6月現代水流量測技術:原理與套用.邀請人:易雨君副教授,北京師範大學.
(3) 2017年3月現代水流量測技術:原理與套用.邀請人:楊文俊教授,長江科學院.
(4) 2014年12月Experimental Study on Diverse Scale Coherent Structures in Open Channel Flows (the Environmental Fluid Dynamics Lecture Series Presents a Seminar).邀請人: Harindra J.S. Fernando教授, University of Notre Dame;
(5) 2014年7月明渠湍流中的相干結構.邀請人:楊勝發教授,重慶交通大學.
會議報告
(1) 2018年8月首屆中國空氣動力學大學:重力流頭部運動速度實驗研究.
(2) 2018年8月第四屆錢寧泥沙青年學術沙龍:異重流中的湍流摻混.
(3) 2015年11月American Physical Society 68th Annual DFD Meeting: Mixing Induced by Colliding Gravity Currents.
(4) 2015年10月5th Investigator Meeting for the Mountain Terrain Atmospheric Modeling and Observations (MATERHORN) Program: Laboratory studies on colliding gravity currents;
(5) 2013年9月35th IAHR World Congress: Spanwise and large-scale structures in smooth open channel flow. (Finals of John F. Kennedy Student Paper Competition)
(6) 2013年6月第6屆全國水力學與水利信息學大會: Population trends of spanwise vortices in smooth open channel flows.
(7) 2012年5月第314屆清華大學博士生論壇:明渠湍流相干結構的主要模式.
研討會
(1) 2015年10月5th Investigator Meeting for the Mountain Terrain Atmospheric Modeling and Observations (MATERHORN) Program, Notre Dame, IN, USA;
(2) 2014年9月Workshop on Microscale Modeling of Complex-Terrain Flows, Notre Dame, IN, USA;
(3) 2014年7月4th International PIV Challenge (participant of Case B), Lisbon, Portugal.

學術合作

(1) 2018.08.13-2018.08.15, Fazle Hussain, Texas Tech University教授,美國工程院院士.邀請方式:順訪;邀請單位:中國農業大學水利與土木工程學院.

學術兼職

1.期刊審稿
(1) Environmental Fluid Mechanics
(2) Journal of Hydrodynamics

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