2019•Unpublished venueRequires access

Methodology of Computing the Entropy Generation and Researching the Thermal Characteristics for Thermosiphon Flat Solar Collector

Yedilkhan N. Amirgaliyev, Murat Kunelbayev, Omirlan Auelbekov, Aliya Kalizhanova, Айнур Козбакова, Nazbek Katayev

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Abstract

The given work presents the methodology of computing the entropy generating and researching the thermal characteristics for thermosiphon flat solar collector. Heat losses in the flat solar collectors are computed using the thermal losses upper factor. The work herein discusses the methodology, based on the 2nd law of thermodynamics, which provides an accurate technique of assessing the heat losses in the flat solar collectors. Entropy generation in the collector is linked, mainly, with the modes of heat conductivity and convection. Collector's heat losses happen, mostly, at the expense of the heat transfer modes thereof. As well there has been computed the heat quantum transmitted by irradiation onto an internal solar collector glass surface.

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What this paper is about

The given work presents the methodology of computing the entropy generating and researching the thermal characteristics for thermosiphon flat solar collector. Heat losses in the flat solar collectors are computed using the thermal losses upper factor. The work herein discusses the methodology, based on the 2nd law of thermodynamics, which provides an accurate technique of assessing the heat losses in the flat solar collectors. Entropy generation in the collector is linked, mainly, with the modes of heat conductivity and convection. Collector's heat losses happen, mostly, at the expense of the heat transfer modes thereof. As well there has been computed the heat quantum transmitted by irradiation onto an internal solar collector glass surface.

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Available abstract

The given work presents the methodology of computing the entropy generating and researching the thermal characteristics for thermosiphon flat solar collector. Heat losses in the flat solar collectors are computed using the thermal losses upper factor. The work herein discusses the methodology, based on the 2nd law of thermodynamics, which provides an accurate technique of assessing the heat losses in the flat solar collectors. Entropy generation in the collector is linked, mainly, with the modes of heat conductivity and convection. Collector's heat losses happen, mostly, at the expense of the heat transfer modes thereof. As well there has been computed the heat quantum transmitted by irradiation onto an internal solar collector glass surface.

Key concepts: Thermosiphon, Heat transfer, Nanofluids in solar collectors, Thermodynamics, Thermal conductivity, Thermal, Heat pipe, Solar energy

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