Structural factors of solar system cluster ground coupled storage rationalization

The computational investigations of unsteady heat transfer in seasonal solar heat storage system were conducted. This storage system consists of nine ground heat exchangers. The investigations were made for periodical diurnal cycle charging during summer season. The heat exchanger is presented as ve...

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Main Authors: Viktor V. Wysochin, Аnna S. Golovatyuk
Format: Article
Language:English
Published: Odessa National Polytechnic University 2015-12-01
Series:Trudy Odesskogo Politehničeskogo Universiteta
Subjects:
Online Access:http://pratsi.opu.ua/articles/show/5094
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spelling doaj-9f8fb2f8cfd74981bd2eae35823cdf8b2020-11-24T21:02:09ZengOdessa National Polytechnic UniversityTrudy Odesskogo Politehničeskogo Universiteta2076-24292223-38142015-12-0120153475110.15276/opu.3.47.2015.08Structural factors of solar system cluster ground coupled storage rationalizationViktor V. Wysochin0Аnna S. Golovatyuk1Odessa National Polytechnic UniversityOdessa National Polytechnic UniversityThe computational investigations of unsteady heat transfer in seasonal solar heat storage system were conducted. This storage system consists of nine ground heat exchangers. The investigations were made for periodical diurnal cycle charging during summer season. The heat exchanger is presented as vertical probe with concentric tubes arrangement. Aim: The aim of the work is the optimization of cluster ground coupled storage – the probes quantity in cluster, their lengths and interval – using high precision mathematical model. Materials and Methods: The mathematical model of conjugate solar system functioning and ground coupled storage involves differential equations describing the incoming and conversion of solar energy in solar collector. Also it includes the heat exchange in ground heat exchangers and three-dimensional soil mass. Results: The need of mutual influence accounting of the solar collector and the ground heat exchanger size ranges is shown. One more thing – capability of effectiveness improvement of the collector based on reasonable step size selection for cluster and selection of active heat exchangers quantity in requisite construction. Conclusions: The recommendations for organization of heat exchangers of the collector work are offered. The five-probe structure is the most effective one for cluster arrangement of seasonal heat storage. The recommended interval between probes is 4 meters.http://pratsi.opu.ua/articles/show/5094ground heat exchangersseasonal heat storageprobesolar system
collection DOAJ
language English
format Article
sources DOAJ
author Viktor V. Wysochin
Аnna S. Golovatyuk
spellingShingle Viktor V. Wysochin
Аnna S. Golovatyuk
Structural factors of solar system cluster ground coupled storage rationalization
Trudy Odesskogo Politehničeskogo Universiteta
ground heat exchangers
seasonal heat storage
probe
solar system
author_facet Viktor V. Wysochin
Аnna S. Golovatyuk
author_sort Viktor V. Wysochin
title Structural factors of solar system cluster ground coupled storage rationalization
title_short Structural factors of solar system cluster ground coupled storage rationalization
title_full Structural factors of solar system cluster ground coupled storage rationalization
title_fullStr Structural factors of solar system cluster ground coupled storage rationalization
title_full_unstemmed Structural factors of solar system cluster ground coupled storage rationalization
title_sort structural factors of solar system cluster ground coupled storage rationalization
publisher Odessa National Polytechnic University
series Trudy Odesskogo Politehničeskogo Universiteta
issn 2076-2429
2223-3814
publishDate 2015-12-01
description The computational investigations of unsteady heat transfer in seasonal solar heat storage system were conducted. This storage system consists of nine ground heat exchangers. The investigations were made for periodical diurnal cycle charging during summer season. The heat exchanger is presented as vertical probe with concentric tubes arrangement. Aim: The aim of the work is the optimization of cluster ground coupled storage – the probes quantity in cluster, their lengths and interval – using high precision mathematical model. Materials and Methods: The mathematical model of conjugate solar system functioning and ground coupled storage involves differential equations describing the incoming and conversion of solar energy in solar collector. Also it includes the heat exchange in ground heat exchangers and three-dimensional soil mass. Results: The need of mutual influence accounting of the solar collector and the ground heat exchanger size ranges is shown. One more thing – capability of effectiveness improvement of the collector based on reasonable step size selection for cluster and selection of active heat exchangers quantity in requisite construction. Conclusions: The recommendations for organization of heat exchangers of the collector work are offered. The five-probe structure is the most effective one for cluster arrangement of seasonal heat storage. The recommended interval between probes is 4 meters.
topic ground heat exchangers
seasonal heat storage
probe
solar system
url http://pratsi.opu.ua/articles/show/5094
work_keys_str_mv AT viktorvwysochin structuralfactorsofsolarsystemclustergroundcoupledstoragerationalization
AT annasgolovatyuk structuralfactorsofsolarsystemclustergroundcoupledstoragerationalization
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