2010Unpublished venueRequires access

Numerical Analysis on the Characteristic of Heat Transfer Enhancement in Horizontal Rectangular Channel by Longitudinal Vortex Generator

Jin Wei, Jun Zhao

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Abstract

This paper is performed to analyze the performance of a newly Longitudinal vortex Generator' heat transfer enhancement in horizontal rectangular channel. Based on the experimental results, the Longitudinal vortex Generator (LVG) performance in different structural parameter are simulated and its parametric effects are discussed. The results show that the performance of the LVG depends strongly on the outside measurement, structure and setting angle. In this case, newly LVG comes in three sizes, and the largest one which overall size is 70 mm/35 mm have super performance in heat transfer enhancement and less pressure loss than others., which heat transfer enhancement would be increased about 30%-120% with a resistance increase of 20%-100%.

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What this paper is about

This paper is performed to analyze the performance of a newly Longitudinal vortex Generator' heat transfer enhancement in horizontal rectangular channel. Based on the experimental results, the Longitudinal vortex Generator (LVG) performance in different structural parameter are simulated and its parametric effects are discussed. The results show that the performance of the LVG depends strongly on the outside measurement, structure and setting angle. In this case, newly LVG comes in three sizes, and the largest one which overall size is 70 mm/35 mm have super performance in heat transfer enhancement and less pressure loss than others., which heat transfer enhancement would be increased about 30%-120% with a resistance increase of 20%-100%.

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Available abstract

This paper is performed to analyze the performance of a newly Longitudinal vortex Generator' heat transfer enhancement in horizontal rectangular channel. Based on the experimental results, the Longitudinal vortex Generator (LVG) performance in different structural parameter are simulated and its parametric effects are discussed. The results show that the performance of the LVG depends strongly on the outside measurement, structure and setting angle. In this case, newly LVG comes in three sizes, and the largest one which overall size is 70 mm/35 mm have super performance in heat transfer enhancement and less pressure loss than others., which heat transfer enhancement would be increased about 30%-120% with a resistance increase of 20%-100%.

Key concepts: Vortex generator, Heat transfer enhancement, Heat transfer, Mechanics, Parametric statistics, Vortex, Materials science, Generator (circuit theory)

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