哈米德Arastoopour

  • 阿默尔工程学院临时院长
  • 亨利·R. 林登工程学教授
  • Director of the Wanger Institute for Sustainable Energy 研究 (WISER)
  • 斯图尔特商学院副教授

哈米德Arastoopour is interim dean of 阿默尔工程学院, the 亨利·R. 林登工程教授,芝加哥伊利诺伊理工学院旺格可持续能源研究所(WISER)所长, 伊利诺斯州. 自1985年以来, he has been a member of the chemical engineering faculty at 威尼斯人平台, where he served as chairman of the department from 1989 to 2003, 和Dean of the 阿默尔工程学院 from 2003 to 2008.

他在气体技术研究所(IGT)开始了实验测量方面的研究活动, 与煤转化和气化过程相关的气力输送和流化床系统的数学建模和仿真. 他的主要研究专长是多相流和颗粒技术的计算流体动力学(CFD)领域,这一领域受到能源和环境相关应用的推动,并在100多篇出版物和13篇美国论文中发表.S. 专利.

He currently serves on the editorial board of Powder Technology Journal. A fellow of the American Institute of Chemical Engineers (AIChE), he has received a number of national awards including the Donald Q. Kern奖 in Heat Transfer and Energy Conversion, the Fluor Daniel Lectureship in Fluidization and Fluid/Particle Systems, 流化工艺表彰奖, 和欧内斯特·W. 蒂埃尔奖. He also received 威尼斯人平台’s excellence in teaching award in 1992. 

教育

Ph.D. from 伊利诺斯州 Institute of Technology (Gas 工程, 1978)
M.S. from 伊利诺斯州 Institute of Technology (Gas 工程, 1975)
B.S. from Abadan Institute of Technology, Iran (Gas 工程, 1973)

研究兴趣

Transport phenomena of multiphase systems and fluidization, sustainability-related研究, 计算流体动力学(CFD)在能量转换和碳捕获过程中的应用, 风能, production of natural gas from unconventional gas reserves and hydrates, 能量储存, 能源/水/食物的关系.

2018 - AIChE可持续工程论坛(SEF)研究奖,表彰与产品可持续性相关的杰出基础或应用研究, 流程, 或者环境.

2017 -美国发明家学会(NAI)研究员.

2015 - AIChE Thomas Baron Award in Fluid-Particle Systems, 由壳牌全球解决方案赞助, 表彰在流体粒子系统领域或具有交叉受精潜力的相关领域产生重大影响的杰出科学/技术成就.

2004 - Fellow of American Institute of Chemical Engineers

2003 - AIChE流化工艺表彰奖, 由陶氏化学赞助, 表彰对流化或流化过程的科学和技术作出重大贡献的人, and who has shown leadership in the engineering community.

2001 ——唐纳德·Q. Kern奖. 表彰他在传热和能量转换方面的专业知识,以及对工程进步的贡献.

1999 - AIChE Lectureship Award in Fluidization and Fluid Particle Systems, 由Fluor Daniel基金会赞助. 表彰他在流体-颗粒和流化床系统数值模拟方面的重大贡献和开创性工作.1992 - University Excellence in Teaching Award, sponsored by Amoco Corporation

1997 ——欧内斯特·W. AIChE本地分会蒂勒奖, sponsored by Amoco Corporation; awarded in recognition of original and significant contributions to the practice of the chemical engineering profession in the Midwest

出版物

谷歌学术引文

  • “The critical contribution of chemical engineering to a pathway to sustainability,” H. Arastoopour, Chemical 工程 Science, 203 247–258 (2019).
  • 使用循环流化床(CFB)反应回路的气体和颗粒流动和碳捕获过程的CFD模拟,” E. Ghadirian J. Abbasian和 H. Arastoopour 粉体技术,344,27-35 (2019).
  • 利用种群平衡模型和FCMOM对煤焦气化过程中粒径变化的CFD模拟,” E. Ghadirian J. Abbasian和 H. Arastoopour 粉体技术,323,128-138 (2018).
  • “降雨对水平风力机性能影响的CFD模拟”,H. 阿拉斯托普尔和A. Cohen AIChE Journal, 63, No 12, 5375-5383 (2017).
  • Numerical Analysis of Frictional Behavior of Dense Gas–Solid Systems,” E. Ghadirian和 H. Arastoopour[j] .中国生物医学工程学报,2016,33 (2):481 - 481 (2017).
  • 碳捕集过程中mgo吸附剂再生反应器的三维CFD模拟,” E. Ghadirian J. Abbasian, H. Arastoopour,粉体技术,318,314-320 (2017).
  • 雨和表面特性对风力机翼型性能影响的数值模拟与分析,” A.C. 科恩和 H. Arastoopour, International Journal of Multiphase Flow, 81,46-53 (2016).
  • 基于EMMS方法的流化床气固阻力CFD模拟, 加德里安和 H. Arastoopour, Journal for Powder Technology, 288, 35-44 (2016)
  • CFD–PBE Numerical Simulation of CO2 Capture Using MgO-based Sorbent,” E. Abbasi J. Abbasian, H. Arastoopour, Journal of Powder Technology, 286, 616–628 (2015).
  • Effect of Steam on Partial Decomposition of Dolomite,” S. Zarghami E. Ghadirian, H. Arastoopour,和J. Abbasian. Ind. Eng. Chem. Res., 5398–5406 (2015).
  • 蒸汽对mgo基吸附剂在燃烧前CO2捕集过程中反应性的影响,“S. Zarghami,. Hassanzadeh, H. Arastoopour,和J. Abbasian,印第安纳州. Eng. Chem. Res., 54 (36), 8860–8866 (2015).
  • 三种不同尺度下药品鼓泡床干燥过程的CFD模拟[J]. 张成泽和 H. Arastoopour, Journal of Powder Technology, 26314-25 (2014).
  • 可再生mgo基吸附剂用于合成气中高温CO2脱除:CO2捕获和吸附剂增强水气转换反应,” E. Abbasi,. Hassanzadeh, S Zarghami, H. Arastoopour 和J. Abbasian,燃料杂志,137,260-268 (2014).
  • CFB的CFD建模:从动力学理论到湍流、传热和多分散系统 H. Arastoopour 和D. Gidaspow,循环流化床,11 (2014).
  • 有限域试函数矩法(FCMOM)的数值分析与实现. Abbasi和 H. Arastoopour,化学工程科学,卷. 102 pp. 432-441 (2013).
  • 基于多相CFD的暴雨条件下风力机翼型性能分析, M. Cai, E. Abbasi和 H. Arastoopour, Ind. Eng. Chem. Res., 52(9), pp. 3266-3275 (2013).
  • Computational Fluid Dynamics (CFD) Application in Fluid/Particle Flow Systems” H. Arastoopour, Powder Metallurgy and Mining Journal, Editorial Paper. Vol. 2、问题.1 (2013).
  • 城市污水在热电厂冷却中的利用:补充水处理和增加冷凝器污垢的综合成本评价, M.E. 沃克,R.B. Theregowda,我. Safari, J. Abbasian, H. Arastoopour, D.A. Dzombak, M.K. 谢,和D.C. 米勒,《威尼斯人平台》60页. 139-147 (2013).
  • CFD Simulation of Different- Scaled Bubbling Fluidized Bed”, J. 张成泽和 H. Arastoopour,流态化14,编辑:J. A. M. Kuipers, R. F. Mudde J. R. Van Ommen和N. G. Deen, 工程 Conference International, pages 691-698, (2013).
  • Economic impact of condenser fouling in existing thermoelectric power plants” M.E. 沃克,我. Safari, R.B. Theregowda, M.K. 谢长廷,J. Abbasian, H. Arastoopour, D. D.C. 米勒能源,44,429-437 (2012).
  • 基于失活动力学模型的循环流化床CO2吸附CFD模拟. Abbasi和 H. Arastoopour cfb10,由T编辑.M. 诺尔顿,工程会议国际,ISBN 978-1-4507-7082-5,页736- 743,(2011).
  • 采用改进的固体剪切挤压工艺设计研究了橡胶的粉碎机理 哈米德Arastoopour, Journal of applied polymer science, 119, 1075-1083 (2010).
  • 非齐次系统有限大小域完全试函数集矩法求解种群平衡方程,” M. 斯特鲁门多和H. Arastoopour, Industrial and 工程 Chemistry 研究, 49(11), 5222-5230 (2010).
  • 连续喷流床稳态流动与传热的数值模拟与实验[j].A. 罗莎,J.T. Freire, H. Arastoopour,流化XIII, S .编辑.D. 金,Y. Kang J.K. 李和Y.C. Seo, 669 -676, ECI,纽约(2010).
  • 沸腾流化床反应器中颗粒干燥的CFD模拟[J]. 杨,C. 罗莎, H. Arastoopour,流化XIII, S .编辑.D. 金,Y. Kang J.K. 李和Y.C. Seo, 853-860, ECI,纽约(2010).
  • Solution of Bivariate Population Balance Equations Using the FCMOM,” M. Strumendo和 H. Arastoopour, Industrial and 工程 Chemistry 研究, 48(1), 262-273 (2009).低交联密度天然橡胶加与不加炭黑的粉碎机理研究,” M. 埃斯坎达里和H. Arastoopour, Powder Technology Journal 189, 454-461 (2009).
  • 基于降压和热刺激的水合物产甲烷模拟研究[j]. 刘,M. Strumendo和 H. Arastoopour, Industrial and 工程 Chemistry 研究, vol 48, no 5, 2451-2464 (2008).
  • Solution of PBE by Non-infinite Size Domain,” M. Strumendo和 H. Arastoopour, Chemical 工程 Science , 63, 2624-2640 (2008).
  • Numerical Simulation of Methane Production from a Methane Hydrate Formation,” Y. 刘,M. Strumendo和 H. Arastoopour, Industrial and 工程 Chemistry 研究, vol. 47, no 8, 2817 - 2828 (2008).
  • Numerical Simulation of Poly-dispersed Systems,” M. Strumendo, H. Arastoopour 和一个. Ahmadzadeh,循环流化床技术IX, ISBN978-3-930400-57-7,编辑J. 维特,W. 诺瓦克,K.E. w和E.U. Hartge Tu Tech Innovation Gmbh, Germany p 313-318 (2008).
  • 限制硫化橡胶链伸展的后果:硬化, 自我同质化, 应变分量的耦合,” E. Bilgili B. 伯恩斯坦和 哈米德Arastoopour, Journal of Elastomers and Plastics, 40, 77-93 (2008).
  • Three Dimensional Numerical Simulation of a Horizontal Rotating Fluidized Bed,” A. Ahmadzadeh和 H. Arastoopour, Powder Technology Journal, 183, 410-416 (2008).
  • 人口平衡方程在旋转流化床聚合反应器中的应用,“A”. Ahmadzadeh, H. Arastoopour, F. 泰摩和M. Strumendo, Chemical 工程 研究 和Design , 86, 329-343 (2008).

  • “Computational Transport Phenomena of Fluid-Particle Systems,” H. Arastoopour D. Gidaspow和E. Abbasi, Mechanical 工程 Series, ISBN 978-3-319-45488-7, Springer Press (2017).
  • 《威尼斯人官网平台》,K.T. 汤姆森,M.M. 墨菲和H. 阿拉斯托普尔,印度理工学院出版社(2016).

 

专利

  • 制造香气的装置和方法. Rasouli R. 黄, H. Arastoopourl, A. Oskouie,临时专利# 42419 (2018).
  • “Modified Rubber Particles and Compositions Including the Same,” Nima Shahidi, 哈米德Arastoopour 和Fouad Teymour,美国.S. 专利# 8,013036B2 (2011).
  • “相互渗透的橡胶颗粒和成分,包括相同的,”尼玛·沙希迪, 哈米德Arastoopour 和Fouad Teymour,美国.S. 专利# 7,816,446 B2 (2010).
  • "Apparatus for Generating Odor Upon Electronic Signal Demand," Firooz Rasouli, 哈米德Arastoopour 阿里·奥斯科伊,美国.S. 专利#6,548,025 (2003).
  • "Apparatus and Process for Pulverization of a Polymeric Material," G.K. 伊万诺夫, H. Arastoopour, E. Bilgili N. Shahidi和B. 伯恩斯坦U.S. 专利#6,513,737 (2003).
  • "Synthesis of A Carbon-Based Catalyst From Sludge" N. 哈利利的会谈中, H. Arastoopour, U.S. 专利# 6,362,127 B1 (2002).
  • “从污泥中合成碳”,N. 哈利利的会谈中, H. Arastoopour, L. 沃尔霍夫,美国.S. 专利# 6030922 (2000).
  • 橡胶材料回收工艺 H. Arastoopour, D. Schocke B. 伯恩斯坦和E. Bilgili U.S. 专利#5,904,885 (1999).
  • "Apparatus for Generating Odor upon Electronic Signal Demand," F. Rasouli, H. Arastoopour,和A. Oskouie U.S. 专利#6,004,516 (1999).
  • "Single-screw Extruder for Solid State Shear Extrusion Pulverization and Method," H. Arastoopour, U.S. 专利#5,704,555 (1998).
  • "Method for Producing Biodegradable Products," F. Shutov, H. Arastoopour,和G. 伊万诺夫,美国.S. 专利#5,688,448 (1997).
  • "Solid State Shear Extrusion Pulverization (Thermoplastic Materials)," F. Shutov G. 伊万诺夫, H. Arastoopour, U.S. 专利#5,397,065 (1995).
  • "Solid State Shear Extrusion Pulverization (Thermosetting Materials)," F. Shutov G. 伊万诺夫, H. Arastoopour, U.S. 专利#5,395,055 (1995).
  • "Solid State Shear Extrusion Pulverization (Elastomers)," F. Shutov G. 伊万诺夫, H. Arastoopour, U.S. 专利#5,415,354 (1995).
  • "Sorbent Composition and Process for Regenerative Sorption of NO X," D. Gidaspow H. 哈里里, H. Arastoopour, U.S. 专利#4,151,124 (1979).