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The efficiency of using a combined solar plant for the heat and humidity treatment of air
Author(s) -
L A Aliyarova,
Гулом Норбоевич Узаков,
Bobir Toshmamatov
Publication year - 2021
Publication title -
iop conference series. earth and environmental science
Language(s) - English
Resource type - Journals
eISSN - 1755-1307
pISSN - 1755-1315
DOI - 10.1088/1755-1315/723/5/052002
Subject(s) - humidity , environmental science , solar energy , solar air conditioning , greenhouse , work (physics) , energy consumption , photovoltaic thermal hybrid solar collector , process engineering , nuclear engineering , thermal , environmental engineering , waste management , meteorology , mechanical engineering , engineering , electrical engineering , physics , horticulture , biology
The authors of this work have proposed a combined solar heating unit for the heat and humidity treatment of greenhouse air supplies. The object of research is a combined solar collector for the simultaneous heating of water and air. The heat and humidity treatment of supply air is an energy-intensive technological process that requires a very large consumption of thermal energy and water resources. For the operation of such a system, electric heating installations are often used; however, these systems are not always available and economical. In this paper, to reduce the consumption of traditional energy for the heat treatment of the air supply, a combined solar collector is proposed, and the results of an experimental study of the operating modes of the installation in the conditions of the city of Karshi are presented. It has been developed combined solar collector, the temperature of the heat carriers at the outlet in the heating mode “water + air” reached up to 48 °C (air) and up to 60 °C (water), which are acceptable for air treatment systems of heat and humidity in greenhouses. As a result of the experimental studies, the high energy efficiency of the combined solar collector in the “water + air” heating mode is shown. It has been established that the efficiency of the installation is in the range of 0.45 - 0.69.

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