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董波
2023-05-09 16:27
  • 董波
  • 董波 - 博士 副教授 硕导-大连理工大学-能源与动力学院-个人资料

近期热点

资料介绍

个人简历


教育经历
2004.9 2011.10 大连理工大学 制冷及低温工程(提前攻博) 博士
2000.9 2004.7 大连理工大学 热能与动力工程(制冷) 学士
1997.9 2000.7 黑龙江省哈尔滨市第六中学
工作经历
2014.4 至今 大连理工大学 讲师
2011.10 2014.4 大连理工大学 博士后
专利
一种测量CO2/盐水/岩石体系接触角的实验装置
一种测量CO2/盐水/岩石体系接触角的实验装置
科研项目
气泡在结构表面内外行为与热质传递相互作用机理研究, 省、市、自治区科技项目, 2017/04/18, 进行
示漏气体在标定装置、收集室内分布规律研究, 企事业单位委托科技项目, 2016/12/07-2017/06/07, 完成
低渗透油藏超临界CO2、油和水微观渗流机理研究, 国家自然科学基金项目, 2012/09/25, 完成
高速气流作用下液膜在预膜板结构唇边破碎机理研究, 国家自然科学基金项目, 2017/08/17, 进行
油田注汽蒸汽管线管件气凝胶保温结构研发, 企事业单位委托科技项目, 2017/07/13-2018/07/13, 进行
超低温预冷器结霜控制技术研究, 企事业单位委托科技项目, 2017/01/01-2018/01/31, 完成
其他奖励
大连理工大学2018年教学质量优良奖 (2019年)
能源与动力学院,优秀共产党员 (2019年)
能源与动力学院,优秀共产党员 (2018年)
能源与动力学院,优秀党员 (2017年)

研究领域


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近期论文


[1]Wang, Xin,Dong, Bo,Chen, Cong,Li, Weizhong,Song, Yongchen.Pore-scale investigation on the influences of mass-transfer-limitation on methane hydrate dissociation using depressurization[J],INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER,2019,144
[2]Zhou, Xun,Dong, Bo,Chen, Cong,Li, Weizhong.A thermal LBM-LES model in body-fitted coordinates: Flow and heat transfer around a circular cylinder in a wide Reynolds number range[J],INTERNATIONAL JOURNAL OF HEAT AND FLUID FLOW,2019,77:113-121
[3]董波,张雅瑾,周训,陈聪,李维仲.Lattice Boltzmann simulation of two-phase flow involving non-Newtonian fluid in rough channels[J],Thermal Science and Engineering Progress,2019,10:309-316
[4]马瑞,宫敬,王勇,李维仲,董波.Lattice Boltzmann Simulation of a Single Droplet Impingement and Evaporation on Inclined Heated Surface[J],International Journal of Computational Methods and Experimental Measurements,2018,6:423-432
[5]周训,董波,李维仲.Numerical investigation on motion characteristic of a bubble rising along overheated surfaces with different curvatures[J],Thermal Science and Engineering Progress,2018,7:176-183
[6]吕姝辰,董波,周训,李维仲.Numerical Simulation of Miscible Displacement in Microchannel in Slip Regime by Lattice Boltzmann Method[A],16th International Heat Transfer Conference (IHTC 16),2018,1-10
[7]姜瑞,董波,张涛,李维仲.Numerical simulation of spray characteristics in a pressure-swirl nozzle[A],16th International Heat Transfer Conference (IHTC 16),2018,1-9
[8]Zhao, Xin,Dong, Bo,Li, Weizhong.Analysis of freezing process about falling droplet using the lattice Boltzmann method[J],INTERNATIONAL JOURNAL OF NUMERICAL METHODS FOR HEAT & FLUID FLOW,2018,28(10):2442-2462
[9]Zhang, Tao,Dong, Bo,Chen, Xiaohong,Qiu, Zhonghua,Jiang, Rui,Li, Weizhong.Spray characteristics of pressure-swirl nozzles at different nozzle diameters[J],APPLIED THERMAL ENGINEERING,2017,121:984-991
[10]Zhao, Zhenyu,Dong, Bo,Chen, Cong,Li, Weizhong.Numerical studies of double emulsions in a coaxial flow-focusing microfluidic device[A],ASME Power Conference 2017,2017,2
[11]Zhao, Xin,Dong, Bo,Li, Weizhong.Numerical investigation on freezing process of a single freefalling droplet based on the lattice Boltzmann method[J],INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER,2017,109:807-811
[12]Zhao, Xin,Dong, Bo,Li, Weizhong,Dou, Binlin.An improved enthalpy-based lattice Boltzmann model for heat and mass transfer of the freezing process[J],Joint Conference of the 5th UK-China and 13th UK Particle TechnologyForum,2017,111:1477-1486
[13]李维仲,董波.不同曲率朝下加热曲面蒸气泡的生长滑移和脱离的实验研究[A],2017
[14]李维仲,董波.Simulation of the droplet impingement and evaporation on surfaces of different inclination angles[A],2017
[15]李维仲,董波.蒸气泡沿朝下圆管壁面运动的格子Boltzmann方法模拟[A],2017
[16]董波,陈聪,李维仲.Lattice Boltzmann simulation of two-phase flow involving non-Newtonian fluid in rough channels[A],3rd International Symposium of Fluids and Thermal Engineering,2017
[17]董波,李维仲.Numerical investigation on motion characteristic of a bubble rising along overheated surfaces with different curvatures[A],2017
[18]罗淇方,董波,李维仲,李义.液滴自由下落过程的格子Boltzmann模拟[A],第九届全国流体力学学术会议,2016,1
[19]Luo, Qifang,Ma, Rui,Dong, Bo,Li, Weizhong,Gong, Jing.Simulation on heat and mass transfer for a subcooled droplet falling freely in saturated steam by the lattice Boltzmann method[J],INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER,2016,101:226-239
[20]Chen, Cong,Dong, Bo,Zhang, Ning,Li, Weizhong,Song, Yongchen.Pressure and Temperature Dependence of Contact Angles for CO2/Water/Silica Systems Predicted by Molecular Dynamics Simulations[J],ENERGY & FUELS,2016,30(6):5027-5034
[21]董波,李维仲.粗糙表面对Bingham流体流动特性的影响[A],2016
[22]董波,李维仲.Numerical investigation on motion characteristic of a single bubble along overheated curved surface[A],International Heat Transfer Symposium 2016,2016
[23]董波,李维仲,左建国,陈聪.Spray characteristics of pressure-swirl atomizers at various Reynolds numbers[A],2016
[24]李维仲,董波,左建国.Numerical investigation on evaporation process of droplet by lattice Boltzmann method[A],2016
[25]Li, Weizhong,Zhou, Xun,Dong, Bo,Sun, Tao.A thermal LBM model for studying complex flow and heat transfer problems in body-fitted coordinates[J],INTERNATIONAL JOURNAL OF THERMAL SCIENCES,2015,98:266-276
[26]Zhao X.,Li W.,Dong B..Numerical investigation on freezing process of a suspended droplet by Lattice Boltzmann Method[A],International Conference on Power Engineering, ICOPE 2015,2015
[27]李维仲,姬安生,董波.过冷沸腾气泡在圆形朝下壁面上特性实验研究[J],大连理工大学学报,2015,55(5):464-469
[28]Ma, Rui,Dong, Bo,Yu, Zhongqiang,Zhang, Tao,Wang, Yong,Li, Weizhong.An experimental study on the spray characteristics of the air-blast atomizer[J],International Heat Transfer Symposium,2015,88(,SI):149-156
[29]Sun, Tao,Li, Weizhong,Dong, Bo.Numerical and experimental study on the motion characteristics of single bubble in a complex channel[J],INTERNATIONAL JOURNAL OF COMPUTATIONAL FLUID DYNAMICS,2015,29(6-8):346-356
[30]Sun, Tao,Li, Weizhong,Dong, Bo.Numerical simulation of vapor bubble growth on a vertical superheated wall using lattice Boltzmann method[J],INTERNATIONAL JOURNAL OF NUMERICAL METHODS FOR HEAT & FLUID FLOW,2015,25(5):1214-1230
[31]Wang, Dayong,Dong, Bo,Breen, Stephen,Zhao, Minglong,Qiao, Juan,Liu, Yu,Zhang, Yi,Song, Yongchen.Review: Approaches to research on CO2/brine two-phase migration in saline aquifers[J],HYDROGEOLOGY JOURNAL,2015,23(1):1-18
[32]Qin H.J.,Li W.Z.,Dong B.,Zhu W.Y..Dynamic simulation and experimental investigation on the performance of a refrigeration system under frosting conditions at low temperatures[A],International Conference on Energy and Environmental Engineering, ICEEE 2014,2014,239-246
[33]李维仲,冯玉静,董波,张宁.直角和贴体坐标系下两种格子Boltzmann 方法的比较研究[J],计算力学学报,2014,31(3):357-362
[34]Qin Haijie,Li Weizhong,Dong Bo,Zhao Zhihai,Zhu Weiying.Experimental study of the characteristic of frosting on low-temperature air cooler[J],EXPERIMENTAL THERMAL AND FLUID SCIENCE,2014,55:106-114
[35]Li, W. Z.,Dong, B.,Feng, Y. J.,Sun, T..NUMERICAL SIMULATION OF A SINGLE BUBBLE SLIDING OVER A CURVED SURFACE AND RISING PROCESS BY THE LATTICE BOLTZMANN METHOD[J],NUMERICAL HEAT TRANSFER PART B-FUNDAMENTALS,2014,65(2):174-193
[36]董波,李维仲.An Experimental Study on the Spray Characteristics of the Air-blast Atomizer[A],2014
[37]董波,李维仲.表面粗糙度对非牛顿流体流动特性影响的格子Boltzmann模拟[A],2014年中国工程热物理学会多相流学术会议,2014
[38]董波,李维仲,冯玉静,孙涛.幂律流体圆柱绕流的格子Boltzmann模拟[J],力学学报,2014,46(1):44-53
[39]董波,李维仲,冯玉静,孙涛.幂律流体圆柱绕流的格子波尔兹曼模拟[J],力学学报,2014,46(1):44-53
[40]李维仲,董波.Numerical Simulation of a Single Bubble Sliding over Curved Surface and Rising Process by Lattice Boltzmann Method[J],Numerical Heat Transfer Part B: Fundamentals. An International Journal of Computation and Methodology,2014,65(2):293-314
[41]李维仲,张晓红,董波,孙涛.单气泡沿倾斜绝热表面运动特性的LBM方法研究[J],化工学报,2013,64(11):3940-3948
[42]李维仲,张晓红,董波,孙涛.单汽泡沿倾斜表面运动特性研究[A],高等学校工程热物理第十届全国学术会议,2013,14
[43]冯玉静,董波,李维仲.使用改进的插值格子Boltzmann方法(GILBM)模拟复杂流动[A],高等学校工程热物理第十届全国学术会议,2013,11
[44]李维仲,孙红梅,董波.利用格子Boltzmann方法模拟单个气泡在复杂流道内的运动特性[J],计算力学学报,2013,30(1):106-110
[45]李维仲,董波,宋永臣.水平通道内黏性指进现象LBM模拟[J],大连理工大学学报,2012,52(3):343-349
[46]Dong, B.,Yan, Y. Y.,Li, W. Z..LBM Simulation of Viscous Fingering Phenomenon in Immiscible Displacement of Two Fluids in Porous Media[J],TRANSPORT IN POROUS MEDIA,2011,88(2):293-314
[47]Dong, B.,Yan, Y. Y.,Li, W. Z.,Song, Y. C..Simulation of the Influence of Surface Wettability on Viscous Fingering Phenomenon in Porous Media[J],JOURNAL OF BIONIC ENGINEERING,2010,7(3):267-275
[48]Dong, Bo,Yan, Y. Y.,Li, Weizhong,Song, Yongchen.Lattice Boltzmann simulation of viscous fingering phenomenon of immiscible fluids displacement in a channel[J],COMPUTERS & FLUIDS,2010,39(5):768-779

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