Povzetek

The primary energy efficiency for various energy-related processes can be calculated using the primary energy factor (PEF). In this paper, the PEFs of district cooling systems (PEF DC) for different types of cold production are derived. These concern cold production with an absorption chiller driven by different available sources and cold production with a compressor chiller driven by different types of engines and related energy sources. Based on the fundamental definition of the PEF, a mathematical model for calculating the PEF DC for different types of cold production was developed. The results in this study reveal that the PEF DC can be significantly improved in the case of combined cooling and power generation. The PEF DC in the case of combined cooling and power generation is lower than when cooling with electrically driven compressor chillers when the energy efficiency of the electricity generation in thermal power plant is low or the PEF of the electricity (PEF el) is high. In cold production technologies where coal is used as the primary energy source more primary energy is consumed compared to other primary energy sources (i.e. naturaThe primary energy efficiency for various energy-related processes can be calculated using the primary energy factor (PEF). In this paper, the PEFs of district cooling systems (PEF DC) for different types of cold production are derived. These concern cold production with an absorption chiller driven by different available sources and cold production with a compressor chiller driven by different types of engines and related energy sources. Based on the fundamental definition of the PEF, a mathematical model for calculating the PEF DC for different types of cold production was developed. The results in this study reveal that the PEF DC can be significantly improved in the case of combined cooling and power generation. The PEF DC in the case of combined cooling and power generation is lower than when cooling with electrically driven compressor chillers when the energy efficiency of the electricity generation in thermal power plant is low or the PEF of the electricity (PEF el) is high. In cold production technologies where coal is used as the primary energy source more primary energy is consumed compared to other primary energy sources (i.e. natural gas, waste heat, etc.).

Ključne besede

faktor primarne energije;proizvodnja hladu;daljinsko hlajenje;hladilnik;

Podatki

Jezik: Angleški jezik
Leto izida:
Tipologija: 1.01 - Izvirni znanstveni članek
Organizacija: UL FS - Fakulteta za strojništvo
UDK: 621.565.9(045)
COBISS: 15130651 Povezava se bo odprla v novem oknu
ISSN: 0039-2480
Matična publikacija: Strojniški vestnik
Št. ogledov: 282
Št. prenosov: 109
Ocena: 0 (0 glasov)
Metapodatki: JSON JSON-RDF JSON-LD TURTLE N-TRIPLES XML RDFA MICRODATA DC-XML DC-RDF RDF

Ostali podatki

Sekundarni jezik: Slovenski jezik
Sekundarni naslov: Faktor primarne energije sistema daljinskega hlajenja
Sekundarni povzetek: V zadnjem desetletju EU zavzema aktivnejšo vlogo na področju energijske učinkovitosti oziroma zmanjšanja rabe energije ter na področju izkoriščanja obnovljivih virov energije. Kot orodje za določitev energijsko učinkovitejših procesov v smislu minimalne rabe primarne energije nam lahko služi faktor primarne energije (PEF). Definiran je kot razmerje med celotno primarno energijo, ki je potrebna za proizvodnjo nekega končnega energetskega produkta, in končnim energetskim produktom. V primeru sistema daljinskega hlajenja je energetski produkt hlad, ki ga dobavljamo končnim odjemalcem. Faktor primarne energije upošteva energijo, ki je potrebna za pretvorbo primarnih virov energije, shranjevanje, transport, distribucijo končnega produkta do odjemalcev ter celotne izgube, povezane s temi procesi.
Sekundarne ključne besede: primary energy factor;combined generation;district cooling;chillers;
URN: URN:NBN:SI
Vrsta dela (COBISS): Članek v reviji
Strani: str. 717-729, SI 123
Letnik: ǂVol. ǂ62
Zvezek: ǂno. ǂ12
Čas izdaje: Dec. 2016
DOI: 10.5545/sv-jme.2016.3777
ID: 12783223