Title of article :
Module greenhouse with high efficiency of transformation of
solar energy, utilizing active and passive glass optical rasters
Author/Authors :
J. Korecko a، نويسنده , , *، نويسنده , , V. Jirka a، نويسنده , , B. Sourek a، نويسنده , , b، نويسنده , , J. Cerveny a، نويسنده , , c، نويسنده ,
Issue Information :
ماهنامه با شماره پیاپی سال 2010
Abstract :
Since the eighties of the 20th century, various types of linear glass rasters for architectural usage have been developed in the Czech
Republic made by the continuous melting technology. The development was focused on two main groups of rasters – active rasters with
linear Fresnel lenses in fixed installation and with movable photo-thermal and/or photo-thermal/photo-voltaic absorbers. The second
group are passive rasters based on total reflection of rays on an optical prism. During the last years we have been working on their standardization,
exact measuring of their optical and thermal-technical characteristics and on creation of a final product that could be
applied in solar architecture.
With the project supported by the Ministry of Environment of the Czech Republic we were able to build an experimental greenhouse
using these active and passive optical glass rasters. The project followed the growing number of technical objectives. The concept of the
greenhouse consisted of interdependence construction – structural design of the greenhouse with its technological equipment securing the
required temperature and humidity conditions in the interior of the greenhouse. This article aims to show the merits of the proposed
scheme and presents the results of the mathematical model in the TRNSYS environment through which we could predict the future
energy balance carried out similar works, thus optimizing the investment and operating costs.
In this article description of various technology applications for passive and active utilization of solar radiation is presented, as well as
some results of short-term and long-term experiments, including evaluation of 1-year operation of the greenhouse from the energy and
interior temperature viewpoints. A comparison of the calculated energy flows in the greenhouse to real measured values, for verification
of the installed model is also involved.
2010 Elsevier Ltd. All rights reserved.
Keywords :
Solar architecture , Fresnel lens , mathematical simulation , Rasters made of glass , Greenhouse
Journal title :
Solar Energy
Journal title :
Solar Energy