A coupled internal-external flow and conjugate heat transfer simulations and experiments on radiators of a transformer
Autor: | Atul Sharma, Sachin B. Paramane, Wim Van der Veken |
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Jazyk: | angličtina |
Rok vydání: | 2016 |
Předmět: |
Engineering
Conjugate Heat Transfer 020209 energy Airflow Energy Engineering and Power Technology Thermodynamics 02 engineering and technology Exponential Decay Industrial and Manufacturing Engineering External flow law.invention law Thermal Flow Distribution 0202 electrical engineering electronic engineering information engineering Conjugate heat transfer Exponential decay Radiator Transformer Power Transformer business.industry Mechanics Heat transfer Radiator (engine cooling) business Experiments |
Zdroj: | IndraStra Global. |
ISSN: | 2381-3652 |
Popis: | Experimental and numerical studies are reported on radiator-fan assembly, for ONAN (Oil Natural and Air Natural) and ONAF (Oil Natural and Air Forced) cooling configurations. In-house radiator test facility is developed for the experiments, and commercial software is used for the simulations. Simulations considered oil inside and air outside the radiator, and the conjugate (conduction-convection-radiation) heat transfer. Present study is done on a group of 5 radiators (of 2.5 m height), each with 27 fins, and 2 fans (of 1 m diameter). Good agreement, between the numerical and the experimental results, are reported for heat dissipation from the radiators. Numerical study is done to study the effect of the vertical as compared to a horizontal air flow on the thermal performance. Significant effect of the flow direction is reported on the oil flow and temperature distribution inside the radiators, with 6.1% more heat dissipation by the horizontal as compared to vertical air flow. An average oil temperature distribution inside the radiators along the height follows an exponential decay distribution, in contrast to the traditional linear profile assumption for all configurations of transformer cooling. The study is useful for transformer designers and manufacturers, leading to an improvement in the thermal design. (C) 2016 Elsevier Ltd. All rights reserved. |
Databáze: | OpenAIRE |
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