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Amir Faghri is an American professor and leader in the engineering profession as an educator , scientist , and administrator. He is an expert in the area of heat pipes and a contributor to thermal-fluids engineering in multiphase heat transfer. Amir Faghri received his M. He received his B. Faghri is the author of six books and has published more than archival technical publications, including journal papers.
Air Force. In the s, he developed high heat flux miniature heat pipes for commercial cooling of laptop computer chips , which have been a principal contributor to the ubiquitous presence of heat pipes for cooling microprocessors in present-day laptop computers.
He was one of the founding faculty members and administrators who established Isfahan University of Technology in In , he joined the University of California, Berkeley as a visiting professor to teach thermal and energy courses.
He also doubled the number of undergraduate degree programs from 6 to In , he is elected as a Honorary Member of the American Society of Mechanical Engineers to recognize his distinguished service that contributes significantly to the attainment of the goals of the engineering profession.
His signature work, Heat Pipe Science and Technology, ranks as the most widely cited book on the subject of heat pipes by Google Scholar. His textbook, Transport Phenomena in Multiphase Systems, presented, for the first time, a unified fundamental treatise on all three forms of phase change — boiling and evaporation , melting and solidification , and sublimation and vapor deposition.
His latest textbook, Advanced Heat and Mass Transfer, covers the subject of heat and mass transfer with a focus on the recent advances in the field.
From Wikipedia, the free encyclopedia. Amir Faghri. Retrieved Archived from the original on Namespaces Article Talk. Views Read Edit View history.
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Handbook of Thermal Science and Engineering pp Cite as. Heat pipes are highly effective passive devices designed to transfer large quantities of heat through a small cross-sectional area over considerable distances, while operating nearly isothermally. Heat pipes are composed of a sealed container, lined internally with a wick and filled partially with a working fluid. Heat pipes are liquid-vapor phase change devices that can transfer heat from a hot source to a cold source through capillary forces generated by the flow of liquid in a wick or other porous media. To accomplish this, heat pipes take advantage of the latent heat of an internal working fluid to transfer heat.
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Manuscript received July 16, ; final manuscript received August 6, ; published online October 10, Editor: Terrence W. Faghri, A. October 10, Heat Transfer. December ; 12 :
Manuscript received July 16, ; final manuscript received August 6, ; published online October 10, Editor: Terrence W. Faghri, A. October 10,
Presents basic and advanced techniques in the analytical and numerical modeling of various heat pipe systems under a variety of operating conditions and limitations. This book consists of fourteen chapters, two appendices, and over illustrations, along with numerous references and a wide variety of technical data on heat pipes. Read more Please choose whether or not you want other users to be able to see on your profile that this library is a favorite of yours. Finding libraries that hold this item
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Amir Faghri is an American professor and leader in the engineering profession as an educator , scientist , and administrator. He is an expert in the area of heat pipes and a contributor to thermal-fluids engineering in multiphase heat transfer. Amir Faghri received his M. He received his B. Faghri is the author of six books and has published more than archival technical publications, including journal papers. Air Force.
The system can't perform the operation now. Try again later. Citations per year. Duplicate citations. The following articles are merged in Scholar. Their combined citations are counted only for the first article. Merged citations.
The heat pipe outer wall temperature distribution, thermal resistance, liquid pressure and axial velocity in presence of suspended nano-scaled solid particle i. Cu, Al2O3 and TiO2 within the fluid water were investigated. The effect of particle concentration and size were explored and it is concluded that the thermal performance of the heat pipe is improved when using nanofluid as the system working fluid. Additionally, it was observed that the thermal resistance of the heat pipe drops as the particle concentration level increases and particle radius decreases. Commenced in January Frequency: Monthly.
Connotations anyone have the above mentioned gym on a PDF confident or anything else. I am wearing to find it anywhere. Underlines in Heat Transfer M. Heavily, in an actual application when a team pipe is called or epoxied to the key of a heat sink, the required thermal conductivity of the heat ok may be. The spiders show that the maximum heat. Young Pipe Science And Technology.
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