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Geothermal Power Supply of Buildings in Harsh Climatic Conditions
The problem of energy saving and sustainable development in construction is especially urgent at the present time. This article describes the new concept of using renewable energy sources in buildings, which represents the efficient scheme of solar and geothermal energy use for buildings with a ventilated façade. To analyze the efficiency of geothermal energy supply to a building with multilayer facade panels, the calculation of ground heat exchanger parameters was carried out in ANSYS software. The heat exchanger parameters were calculated for heating the supply air for temperatures from ‒18 to 0 °C. During the experiment three variants of collector pipe diameters were analyzed at different values of air flow rates. The calculation results show that with a decrease in the flow rate in the pipe, the difference in air temperatures at the inlet and outlet increases and the specific heat removal decreases.
Geothermal Power Supply of Buildings in Harsh Climatic Conditions
The problem of energy saving and sustainable development in construction is especially urgent at the present time. This article describes the new concept of using renewable energy sources in buildings, which represents the efficient scheme of solar and geothermal energy use for buildings with a ventilated façade. To analyze the efficiency of geothermal energy supply to a building with multilayer facade panels, the calculation of ground heat exchanger parameters was carried out in ANSYS software. The heat exchanger parameters were calculated for heating the supply air for temperatures from ‒18 to 0 °C. During the experiment three variants of collector pipe diameters were analyzed at different values of air flow rates. The calculation results show that with a decrease in the flow rate in the pipe, the difference in air temperatures at the inlet and outlet increases and the specific heat removal decreases.
Geothermal Power Supply of Buildings in Harsh Climatic Conditions
Lecture Notes in Civil Engineering
Radionov, Andrey A. (editor) / Ulrikh, Dmitrii V. (editor) / Timofeeva, Svetlana S. (editor) / Alekhin, Vladimir N. (editor) / Gasiyarov, Vadim R. (editor) / Sharovarova, E. (author) / Alekhin, V. (author) / Shcheklein, S. (author) / Novoselova, N. (author) / Hussein, A. (author)
2022-03-02
9 pages
Article/Chapter (Book)
Electronic Resource
English
Elsevier | 2025
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