FIELD: heating engineering, particularly heating equipment for any buildings and building structures.
SUBSTANCE: method involves receiving heat from indoor high-potential heat source and from low-potential heat source. Heat from low-potential source including ground pipeline laid in ground at depth below ground freezing point is transmitted to heat carrier inside volumetric radiator systems installed in building wall having n number of layers. Number of radiator systems m≥1. Radiator systems include low-potential source heat-carrier. Places of radiator system installation are determined from condition that coordinates of axial plane of circulation heat carrier having tc temperature inside volumetric radiator system are determined from graph presenting temperature distribution inside n-layered wall, wherein n≥3, tc>to, here tc is heat carrier temperature in volumetric radiator system and to is selected temperature in graph of temperature distribution over axial plane of circulation heat carrier. tc is regulated by circulation pump capacity in dependence of preselected indoor temperature and ambient air temperature fluctuation.
EFFECT: decreased costs for building heating with high-potential main heat source due to possibility of additional low-potential heat source usage.
3 cl, 3 dwg
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Authors
Dates
2007-06-27—Published
2005-12-12—Filed