TY - JOUR
T1 - The effectiveness of absorption heat pumps application for the increase of economic efficiency of CHP operation
AU - Luzhkovoy, Dmitriy S.
AU - Romashova, Olga Yu
AU - Tubolev, Aleksandr A.
AU - Kobenko, Yuriy V.
AU - Riabova, Elena S.
PY - 2016/12/21
Y1 - 2016/12/21
N2 - The article deals with a comparative analysis of CHP operational efficiency in various working modes before and after the absorption heat pumps installation. The calculation was performed using a mathematical model of the extraction turbine PT- 80/100-130/13. Absorption heat pumps of LLC "OKB Teplosibmash" were used as AHP models for the analysis. The most effective way of absorption lithium-bromide heat pumps application as a part of the turbine PT-80/100-130/13 turned out to be their usage in a heat-producing mode during a non-heating season with a load of hot water supply. For this mode the dependence of the turbine heat efficiency on the heat load of the external consumer at a given throttle flow was analyzed.
AB - The article deals with a comparative analysis of CHP operational efficiency in various working modes before and after the absorption heat pumps installation. The calculation was performed using a mathematical model of the extraction turbine PT- 80/100-130/13. Absorption heat pumps of LLC "OKB Teplosibmash" were used as AHP models for the analysis. The most effective way of absorption lithium-bromide heat pumps application as a part of the turbine PT-80/100-130/13 turned out to be their usage in a heat-producing mode during a non-heating season with a load of hot water supply. For this mode the dependence of the turbine heat efficiency on the heat load of the external consumer at a given throttle flow was analyzed.
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U2 - 10.1051/matecconf/20179201054
DO - 10.1051/matecconf/20179201054
M3 - Conference article
AN - SCOPUS:85008655967
VL - 92
JO - MATEC Web of Conferences
JF - MATEC Web of Conferences
SN - 2261-236X
M1 - 01054
T2 - 2016 Thermophysical Basis of Energy Technologies, TBET 2016
Y2 - 26 October 2016 through 28 October 2016
ER -