Increasing electrical power output and fuel efficiency of gas engines in integrated energy system by absorption chiller scavenge air cooling on the base of monitoring data treatment

An advanced scavenge air cooling system for reciprocating gas engines of integrated energy system for combined electricity, heat and refrigeration generation has been developed. New method of deep scavenge air cooling and stabilizing its temperature at increased ambient air temperatures and three-ci...

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Main Authors: Radchenko Andrii, Radchenko Mykola, Konovalov Andrii, Zubarev Anatolii
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:E3S Web of Conferences
Online Access:https://doi.org/10.1051/e3sconf/20187003011
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author Radchenko Andrii
Radchenko Mykola
Konovalov Andrii
Zubarev Anatolii
author_facet Radchenko Andrii
Radchenko Mykola
Konovalov Andrii
Zubarev Anatolii
author_sort Radchenko Andrii
collection DOAJ
description An advanced scavenge air cooling system for reciprocating gas engines of integrated energy system for combined electricity, heat and refrigeration generation has been developed. New method of deep scavenge air cooling and stabilizing its temperature at increased ambient air temperatures and three-circuit scavenge air cooling system with absorption lithium-bromide chiller and wet-type cooling tower was proposed. Such cooling method does not require essential constructive changes in the existing scavenge air cooling system but only an addition heat exchanger for chilling scavenge air cooling water of scavenge air low-temperature intercooler closed contour by absorption chiller. A chilled water from absorption chiller is used as a coolant. To evaluate the effect of gas engine scavenge air deeper cooling compared with its typical radiator cooling, data on the dependence of fuel consumption and power output of gas engine on ambient air temperature at the inlet of the radiator are analized. The efficiency of engine scavenge air deep cooling at increased ambient air temperatures was estimated by reducing the gas fuel consumption compared with radiator cooling.
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spelling doaj.art-c4e90ab9c15f4800abd7bce6cef8f48a2022-12-21T18:58:10ZengEDP SciencesE3S Web of Conferences2267-12422018-01-01700301110.1051/e3sconf/20187003011e3sconf_htrse2018_03011Increasing electrical power output and fuel efficiency of gas engines in integrated energy system by absorption chiller scavenge air cooling on the base of monitoring data treatmentRadchenko Andrii0Radchenko Mykola1Konovalov Andrii2Zubarev Anatolii3Admiral Makarov National University of ShipbuildingAdmiral Makarov National University of ShipbuildingAdmiral Makarov National University of ShipbuildingAdmiral Makarov National University of ShipbuildingAn advanced scavenge air cooling system for reciprocating gas engines of integrated energy system for combined electricity, heat and refrigeration generation has been developed. New method of deep scavenge air cooling and stabilizing its temperature at increased ambient air temperatures and three-circuit scavenge air cooling system with absorption lithium-bromide chiller and wet-type cooling tower was proposed. Such cooling method does not require essential constructive changes in the existing scavenge air cooling system but only an addition heat exchanger for chilling scavenge air cooling water of scavenge air low-temperature intercooler closed contour by absorption chiller. A chilled water from absorption chiller is used as a coolant. To evaluate the effect of gas engine scavenge air deeper cooling compared with its typical radiator cooling, data on the dependence of fuel consumption and power output of gas engine on ambient air temperature at the inlet of the radiator are analized. The efficiency of engine scavenge air deep cooling at increased ambient air temperatures was estimated by reducing the gas fuel consumption compared with radiator cooling.https://doi.org/10.1051/e3sconf/20187003011
spellingShingle Radchenko Andrii
Radchenko Mykola
Konovalov Andrii
Zubarev Anatolii
Increasing electrical power output and fuel efficiency of gas engines in integrated energy system by absorption chiller scavenge air cooling on the base of monitoring data treatment
E3S Web of Conferences
title Increasing electrical power output and fuel efficiency of gas engines in integrated energy system by absorption chiller scavenge air cooling on the base of monitoring data treatment
title_full Increasing electrical power output and fuel efficiency of gas engines in integrated energy system by absorption chiller scavenge air cooling on the base of monitoring data treatment
title_fullStr Increasing electrical power output and fuel efficiency of gas engines in integrated energy system by absorption chiller scavenge air cooling on the base of monitoring data treatment
title_full_unstemmed Increasing electrical power output and fuel efficiency of gas engines in integrated energy system by absorption chiller scavenge air cooling on the base of monitoring data treatment
title_short Increasing electrical power output and fuel efficiency of gas engines in integrated energy system by absorption chiller scavenge air cooling on the base of monitoring data treatment
title_sort increasing electrical power output and fuel efficiency of gas engines in integrated energy system by absorption chiller scavenge air cooling on the base of monitoring data treatment
url https://doi.org/10.1051/e3sconf/20187003011
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AT konovalovandrii increasingelectricalpoweroutputandfuelefficiencyofgasenginesinintegratedenergysystembyabsorptionchillerscavengeaircoolingonthebaseofmonitoringdatatreatment
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