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Amy S. Fleischer
Researcher at California Polytechnic State University
Publications - 86
Citations - 3063
Amy S. Fleischer is an academic researcher from California Polytechnic State University. The author has contributed to research in topics: Thermal conductivity & Heat transfer. The author has an hindex of 24, co-authored 86 publications receiving 2521 citations. Previous affiliations of Amy S. Fleischer include University of Pennsylvania & Villanova University.
Papers
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A review of data center cooling technology, operating conditions and the corresponding low-grade waste heat recovery opportunities
TL;DR: In this article, the most promising methods and technologies for recovering data center low-grade waste heat in an effective and economically reasonable way are identified and discussed, based on a comparison between data centers' operational thermodynamic conditions and the operational requirements of the discussed waste heat recovery techniques, absorption cooling and organic Rankine cycle are found to be among the more promising technologies for data center waste heat reuse.
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Thermal Challenges in Next-Generation Electronic Systems
Suresh V. Garimella,Amy S. Fleischer,Jayathi Y. Murthy,A. Keshavarzi,Ravi Prasher,Chandrakant D. Patel,Sushil H. Bhavnani,Rama Venkatasubramanian,Ravindranath V. Mahajan,Yogendra Joshi,Bahgat Sammakia,B.A. Myers,L. Chorosinski,Martine Baelmans,P. Sathyamurthy,Peter E. Raad +15 more
TL;DR: The thermal challenges in next-generation electronic systems, as identified through panel presentations and ensuing discussions at the workshop, Thermal Challenges in Next Generation Electronic Systems, held in Santa Fe, NM, January 7-10, 2007, are summarized in this article.
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Flow visualization of a round jet impinging on cylindrical surfaces
TL;DR: In this paper, smoke wire flow visualization is used to investigate the behavior of a round jet issuing from a straight tube and impinging on concave and convex surfaces with high relative curvature values.
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Energy storage and solidification of paraffin phase change material embedded with graphite nanofibers
TL;DR: In this article, the effect of graphite nanofibers (GNFs), aspect ratio and power density on thermal storage and solidification time of a phase change material (PCM) which is embedded between two sets of aluminum fins was examined.
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Thermo-economic analysis of steady state waste heat recovery in data centers using absorption refrigeration
TL;DR: In this article, a steady-state thermodynamic model is developed to perform energy balance and exergy analyses for a novel configuration of an on-chip two-phase cooling system and an absorption refrigeration system.