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Title:TEHNOLOŠKA REŠITEV KONTROLNIH POSTOPKOV PRI PROIZVODNJI TOPLOTNIH ČRPALK
Authors:ID Vivod, Niko (Author)
ID Marčič, Milan (Mentor) More about this mentor... New window
ID Avsec, Jurij (Comentor)
Files:.pdf MAG_Vivod_Niko_2011.pdf (3,97 MB)
MD5: 697C8CFDDF84FD051FF281481224CCB8
PID: 20.500.12556/dkum/a97beabb-bac3-4feb-a681-05ad15ef1396
 
Language:Slovenian
Work type:Master's thesis/paper
Organization:FE - Faculty of Energy Technology
Abstract:Toplotna črpalka pretvori energijo iz nižjega temperaturnega nivoja v energijo višjega toplotnega nivoja. Pretvorba je možna zaradi krožnega hladilnega procesa. Hladilna tekočina izpareva pri nizki temperaturi in porabi večji del energije iz okolja (zrak, voda, zemlja), ko prehaja iz tekočega v plinsko stanje. Kompresor stisne hladilni plin in ga s tem dvigne na višji temperaturni nivo. Vroči plin se nato utekočini, pri čemer odda svojo toploto ogrevalnemu sistemu. Posebno področje, znotraj razvoja toplotnih črpalk, predstavljajo metode in postopki za zagotavljanje želene kakovosti izdelkov. V procesu razvoja in izdelave toplotne črpalke so vključeni kontrolni procesi, ki zagotavljajo pravilno delovanje toplotne črpalke v celotnem življenjskem ciklu. Največji poudarek pri razvoju toplotnih črpalk je na izkoristku hladilnega kroga in posledično na grelnem številu toplotne črpalke. Sodobni laboratorij in dolgoletne izkušnje Gorenja na področju hladilne tehnike so garancija za uspešen razvoj lastne produkcije toplotnih črpalk.
Keywords:toplotna črpalka, hladilni krog, grelno število, kontrolni postopki, Mollierov diagram, toplotni izmenjevalec
Place of publishing:Velenje
Publisher:[N. Vivod]
Year of publishing:2011
PID:20.500.12556/DKUM-17629 New window
UDC:621.577:658.5628043.3)
COBISS.SI-ID:548392 New window
NUK URN:URN:SI:UM:DK:BMSVHR3V
Publication date in DKUM:04.05.2011
Views:4006
Downloads:519
Metadata:XML DC-XML DC-RDF
Categories:FE
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Secondary language

Language:English
Title:HEAT PUMPS
Abstract:Heat pump transforms energy from the low temperature grade into energy of higher temperature grade. The transformation is possible because of circulating cooling process. Refrigerant evaporates at low temperature and uses the major part of energy from the environment (air, water, soil) during transformation from liquid into gas state. Compressor compresses the refrigerant gas and thus raises it to higher temperature level. Hot gas then liquefies and transmits its heat to the heating system. Methods and procedures used for assurance of the desired quality of products represent a special area within the area of development of heat pumps. The process of development and manufacture of heat pump includes inspection processes which assure correct functioning of heat pump in its complete lifetime cycle. While developing heat pumps, the major emphasis and attention is dedicated to the efficiency of cooling circuit and consequently, to coefficient of performance to heat pump. Modern laboratory and long years of experiences of Gorenje in the field of refrigeration are the best warranty for successful development of own production of heat pumps.
Keywords:heat pumps, refrigeration cycle, coefficient of performance, control procedures, Mollier diagram, heat exchanger


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