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Eksperimentalna analiza toka zraka skozi uparjalnik toplotne črpalke zrak–voda
ID Zakonjšek, Julijan (Author), ID Poredoš, Primož (Mentor) More about this mentor... This link opens in a new window

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Abstract
Enakomeren in zadosten tok zraka skozi uparjalnik toplotne črpalke zrak--voda je pomemben za učinkovito izrabo njegove aktivne površine. V dveh sklopih meritev smo ovrednotili vpliv odmika ventilatorja ter izvedbe in položaja zaščitnih stranic toplotne črpalke na volumski pretok zraka in njegovo porazdelitev po višini uparjalnika. Hitrost zraka smo merili na več mestih v vstopni ravnini uparjalnika pri različnih vrtilnih frekvencah ventilatorja. Primerjavo smo dopolnili z meritvami statične tlačne razlike med območjem za uparjalnikom in okolico ter električne moči ventilatorja. Večji odmik je izboljšal porazdelitev brez zaznavnega vpliva na pretok in moč. Namestitev sprednje zaščitne stranice je izboljšala enakomernost porazdelitve, vendar zmanjšala pretok in povečala električno moč ventilatorja. Primerjava različnih izvedb je služila kot podlaga za izbor ustreznejše izvedbe zaščitne stranice.

Language:Slovenian
Keywords:toplotne črpalke zrak-voda, cevno-lamelni uparjalniki, zračni tok, porazdelitev hitrosti zraka, volumski pretok, odmik ventilatorja
Work type:Bachelor thesis/paper
Typology:2.11 - Undergraduate Thesis
Organization:FS - Faculty of Mechanical Engineering
Place of publishing:Ljubljana
Publisher:[J. Zakonjšek]
Year:2026
Number of pages:XI, 55 f.
PID:20.500.12556/RUL-186397 This link opens in a new window
UDC:532.57:621.5.048:621.577(043.2)
COBISS.SI-ID:289562883 This link opens in a new window
Publication date in RUL:01.09.2026
Views:114
Downloads:30
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Secondary language

Language:English
Title:Experimental investigation of air flow through an air-to-water heat pump evaporator
Abstract:
Uniform and sufficient airflow through the evaporator of an air-to-water heat pump is important for the efficient utilization of its active surface. In two sets of measurements, we evaluated the effects of fan-to-evaporator spacing and the design and position of the heat pump’s protective panels on the volumetric airflow rate and its distribution across the height of the evaporator. Air velocity was measured at several locations in the evaporator inlet plane at different fan rotational speeds. The comparison was supplemented by measurements of the static pressure difference between the region downstream of the evaporator and the surroundings, as well as the fan electrical power. Increasing the spacing improved the airflow distribution without a detectable effect on the volumetric flow rate or electrical power. Installing the front protective panel improved the uniformity of the airflow distribution, but reduced the volumetric flow rate and increased the fan electrical power. The comparison of different designs provided a basis for selecting a more suitable protective panel design.

Keywords:air-to-water heat pumps, finned-tube evaporators, airflow, air velocity distribution, volumetric flow rate, fan offset

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