Zero-Emission Building Heating System Using Thermal Energy Accumulation in the Ground

Author(s):  
Paweł Ocłoń
2006 ◽  
Vol 26 (17-18) ◽  
pp. 2228-2235 ◽  
Author(s):  
Chenhua Gou ◽  
Ruixian Cai ◽  
Guoqiang Zhang

2021 ◽  
Vol 25 (1) ◽  
pp. 130-139
Author(s):  
Е.G. Komarov ◽  
◽  
V.V. Lozovetsky ◽  
V.V. Lebedev ◽  
V.M. Cherkina ◽  
...  

Results of design modeling of air-conditioning and central air of premises of server stations are presented. The estimation of thermal balance of typical server station is made. The potential of thermal energy which can be used is estimated it is useful for needs of central heating, to save power resources, and not to pollute environment thermal emissions. The detailed analysis of components of is material-power balance is made. The mathematical model of central air is developed for these purposes. Analysis problems of the heat substances exchange processes, the drainage of air connected with processes, occurring at its cooling are considered. The designing and operation problems interfaced with the heat substances exchange in air coolers are considered. The heat pump scheme of system is offered the central heating, utilizing warmly server station at air conditioning indoors. The model is offered and results of optimization of parameters heat pump schemes are considered. Results can be applied at designing of central airs of premises of server stations with passing recycling of thermal emissions for needs of central heating.


Author(s):  
I. R. Vashchishak ◽  
O. Lavryk

The importance of the work is based on the necessity of developing energy-efficient heating systems in the conditions of rapid increase of energy prices. Heating systems for buildings and fuels for them are analyzed. It is established that a combined heating system with several sources of thermal energy, one of which is turbo fireplace is the most energy-efficient. The processes in fireplaces with a water loop are considered. The design of turbo fireplace is improved by applying a thermoelectric battery. The elements of the thermoelectric battery are selected and its power is determined. The power of the integrated heating system of the building is calculated. The block scheme of the integrated heating system is considered. The heating system integrator is selected. The algorithm of microcontroller operation with advanced turbo fireplace with a thermoelectric battery is developed and a microcontroller operation is chosen. The algorithm of the integrated heating system developed an algorithm for the operation of its microcontroller.


2013 ◽  
Vol 6 (2) ◽  
pp. 135-145
Author(s):  
Tadahmun A. Yassen ◽  
Hussain H. Al-Kayiem ◽  
Maki H. Khalaf ◽  
Nassir D. Dhamin

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