On Heat Transfer Performance Of Cooling Systems Using Nanofluid For Electric Motor Applications
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5th International Conference on Advances in Energy Research
ISBN: 978-1-5108-3733-1 5th International Conference on Advances in Energy Research (ICAER 2015) Mumbai, India 15 - 17 December 2015 Editors:
of Nanoﬂuid-Based Cooling System for Synchronous Generators
cooling that it had a better enhancement of heat transfer than the base ﬂuid for high heat ﬂux dissipation applications. Peyghambarzadeh et al.  conducted an experimental study to show that the Al2O3 nanoﬂuid, when used as car radiator coolant, has a clearly superior heat transfer enhancement compared to its base ﬂuid.
CFD ANALYSIS AND EXPERIMENTAL INVESTIGATION OF PERCENTAGE
outlet decreases with enhancement of heat transfer coefficient and ultimately heat transfer rate increases. 5. This new working fluid (Hybrid Nanofluid) with higher heat transfer performance would promote the car engine performance and would reduce fuel consumption. Therefore, it can be followed by other investigators to eliminate the
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CuO/water Nanofluid Convective Heat Transfer Through Square
Low performance of conventional heat transfer fluidsintensified the research for developing many techniques to increase heat transfer rate for cooling systems in a wide range of industry applications. The attention has been drawn to the heat transfer fluidas a key to increase heat transfer rate more than fiftyyears ago.
ECTC Section 6 cover - UAB
KEY WORDS: Electromechanical actuators, cooling motor windings, thermal management, heat pipes, porous fins INTRODUCTION EMA s are essential to the operation of reliable power-by-wire actuation systems for aerospace applications, and they present a formidable alternative to replace hydraulic systems from aircraft and spacecraft .
On Heat Transfer Performance of Cooling Systems Using
On Heat Transfer Performance of Cooling Systems Using Nanofluid for Electric Motor Applications Ali Deriszadeh * and Filippo de Monte Department of Industrial and Information Engineering and Economics, University of L Aquila, 67100 L Aquila, Italy; [email protected]
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H. Tyagi, Critical Review of the Novel Applications and Uses of Nanofluids, in Proceedings of the ASME 3rd Micro/Nanoscale Heat & Mass Transfer International Conference, MNHMT2012-75189 (2012) 5. R.A. Taylor, P.E. Phelan, R.J. Adrian, A. Gunawan, T.P. Otanicar, Characterization of a Nanofluid
Experimental Investigation of Convective Heat Transfer for
heat transfer characteristics which he named as Nano fluids at Argonne National Laboratory of USA. Enhancement in thermal properties is depends on the method of preparation, particle size, type of particle etc. Now a day s researchers also start investigating the potential in hybrid Nano fluid to get more benefit in heat transfer rate. Che
High Efficiency Radiator Design for Advanced Coolant
multiple cooling systems. Nanofluids Nanofluids are a relatively new classification of fluids which consist of a base fluid with nano-sized particles (1-100 nm) suspended within them. These particles, generally a metal or metal oxide, increase conduction and convection coefficients, allowing for more heat transfer out of the coolant.
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performance of an evacuated tube in solar collector using heat pipes international journal for scientific research & development 2016 google scholar 9 p. vijaykumar v. t. rajkumar p. ramkumar study of heat pipes in solar colectors using nano fluids ijsrst 2016 google scholar 10 m. manojkumar r. shanmuga prakash wear characterstics
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Mass Transfer Iitd - secmail.aws.org
Heat Transfer 1994 This book sets forth the fundamentals of solar energy, its applications and basic heat transfer. Design, construction, and performance of solar thermal devices and photovoltaic systems are discussed at length, along with the economic aspects of solar systems.
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CHAPTER 1 INTRODUCTION 1.1 Introduction
) nanofluids for the cooling in electric motors. (b) To compare heat transfer performances using ethylene glycol based aluminum oxide nanofluid with conventional coolants such as ethylene glycol. 1.5 Importance of the Study As stated earlier, the traditional approach of increasing the cooling rate by using
Energy Day 2021 Department of Energy Science & Engineering
4:40-4:50 Soumil Chaubal Battery management systems for electric vehicles B1-ED009 4:50-5:00 Anant Taraniya Battery Thermal Management System for Electric Vehicles B1-ED010 5:00-5:10 Premanshu Kumar Singh Modelling of Battery Thermal Management System for Electric Vehicles: Liquid Cooling Using Nanofluid B1-ED011
Development of Nanofluids for Cooling Power Electronics for
Perform a heat transfer analysis of power electronics cooling package. Using nanofluid engineering approach to formulate and optimize suspensions to meet the property requirements defined by thermal analysis Process scale-up & test performance of formulated nanofluid in heat transfer loop FY11 FY12/FY13 FY13/FY14 Determine the magnitude of
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Containment Cooling Methods for Safety Enhancement of Nuclear Power Plants. 3. Hoseong Lee, Senior Researcher, KATECH (Korea Automotive Technology Institute), South Korea. Experimental Study on Heating Performance Characteristics of Coolant Heat-Sourced Heat Pump System in a Fuel Cell Electric Vehicle. 4.
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2011InternationalConferenceon ConsumerElectronics, CommunicationsandNetworks (CECNet2011) Xianning,China 16-18April2011 Volume2 Pages951-1898 IEEECatalogNumber: CFP1153N-PRT ISBN: 978-1-61284-458-9
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applications and energy systems, nanofluids were shown to have great potential to provide enhanced heat transfer performance [1-6]. Recent advances in nanofluid preparation and application technologies make it possible to use nanoparticles in lubricants and in refrigerants. Thus, the application of nanofluid technology in refrigeration
DOUBLE PIPE HEAT EXCHANGER WITH SPIRAL FLOW
The overall heat transfer coefficient is 5-9% higher than that of parallel flow at 0.8% nanofluid Mushtag I. Hasan et al.  studied about Investigation of a counter flow micro channel heat exchanger performance with using nanofluid as coolant. In this paper the performance of counter flow micro channel heat exchanger (CFMCHE) is
VTMS 12 VEHICLE THERMAL MANAGEMENT SYSTEMS CONFERENCE AND
cooling systems as well as air flow management Network with thought-leaders and companies at the forefront of VTMS technology VTMS 12 WILL COVER THE LATEST RESEARCH AND TECHNOLOGICAL ADVANCES IN THE FIELD OF HEAT TRANSFER, ENERGY MANAGEMENT, THERMAL COMFORT AND THE EFFICIENT INTEGRATION AND CONTROL OF ALL THERMAL SYSTEMS WITHIN THE VEHICLE
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Numerical Investigation of von Karman Swirling Bioconvective Nanofluid Transport from a Rotating Disk in a Porous Medium with Stefan Blowing and Anisotropic Slip Effects O. Anwar Bég 1 , Muhammad 5Nomani Kabir 2* , Md Jashim Uddin 3,4 , Ahmad Izani Md. Ismail 3 and Yasser Alginahi
Nanofluid : A Tool to Increase the Efficiency of Solar Collector
heat transfer and performance of solar collectors using Nano fluid. Keywords - Nano fluid, Heat transfer, solar collector, Alumina-copper I.INTRODUCTION Nanofluid is the fluid with Nano sized solid particles. The metallic or nonmetallic nanoparticles change the transport properties and heat transfer characteristics of the base fluid.
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phase heat transfer, electronics cooling, phase change materials, spray cooling, heat pipes/loop heat pipes and advanced material research will be featured in this session. This session covers advances in diagnostic, prognostic, and health management technology as applied to aerospace electrical power systems to
AN EXPERIMENTAL INVESTIGATION OF NANOFLUID AS COOLANT IN ENGINES
performance cooling plays an important role in the development of energy-efficient heat transfer fluids which are required in many industries and commercial applications. However, conventional coolants are inherently poor heat transfer fluids. Nanofluid a term coined by Choi in 1995 is a new class of heat transfer
Review of Experimental Analysis of Parallel and Counter Flow
Physical characteristics and thermal performance of a real heat exchanger were studied in this work. Also the convective heat transfer coefficient increases with both Reynolds and Nusselt numbers, which increases the overall heat transfer coefficient. R. W. Tapre et al.  has discussed about Review on Heat Transfer in Spiral Heat Exchanger
International ournal of VIBGYOR
highest temperature spot by 40.5 °C and 37.5 °C, respectively. The cooling performances of both systems are practical cooling schemes. The open-air passage system draws air from the environment that can potentially contaminate the internal motor components. The copper tube heat exchanger preserves the original ingress
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Abstract: In this publication, the cooling fluid for direct oil-cooled electric traction drive is investigated. A dedicated thermal resistance model was developed in order to show the influence of the fluid properties on the continuous performance. For this purpose, the heat transfer parameters are adjusted in the simulation using an exponential
TEQIP III Support for UG/PG/PhD Students for presenting paper
Investigation on the Heat Transfer Performance of BeO Water Nanofluid in an Electronic Cooling System International Heat and Mass Transfer (IHMTC 2019) organized by Indian Society of Heat and Mass transfer (ISHMT) American Society of Thermal and Fluids Engineers (ASTFE) 28th to 31st December, 2019 Indian Institute of Technology
A Critical Review on Applications of Nano-Fluid as Coolant
performance. By maximizing the heat transfer area and increasing the heat transfer coefficient, the heat transfer through radiator can be improved The heat transfer coefficient can be increased either by using more efficient heat transfer methods or by improving the thermo physical properties of the heat transfer material i.e. coolant. Here
Application of SiO2 Nanoparticles as Lubricant Additive in
an experimental study on the performance of a domestic refrigerator using CuO-R134a nano-refrigerant as working fluid. The experimental studies indicate that the refrigeration system with nanorefrigerant works normally. Heat transfer coefficients were evaluated using FLUENT for heat flux ranged from 10 to 40 kW/m2, using nano CuO
Department of Petrochemical Engineering
Natural Convection Heat Transfer From Square Cross Section Cylinder in a Vented Enclosure), Duhok University Journal,. 5. Omar M. Ali, Ghalib Y. Kahwaji (Numerical Investigation Of Natural Convection Heat Transfer From Circular Cylinder Inside An Enclosure using Different Types Of Nanofluids), IJMET Journal, Vol. 5, Issue 5, May 2014. 6.
GBSE2018/SASH2018 PROGRAM SCHEDULE 24-Jan
Heat Transfer Enhancement in a Circular Tube fitted with Twisted Tape having continuous cut edges using CuO-Water Nanofluid Sunya lab Hall 3.30 pm- 3:45 pm Tea break Sunya lab Hall 3:45 pm - 5:00 pm Panel Discussion 1: Sustainable Habitats for Smart Cities Multimedia Hall 4 pm-5.15 pm Session 3