Herceg, Stjepan (2019) Projekt sustava grijanja dizalicom topline. = Design of hetaing system with heta pump. Undergraduate thesis , Sveučilište u Zagrebu, Fakultet strojarstva i brodogradnje, UNSPECIFIED. Mentor: Balen, Igor.
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Herceg_2019_završni_preddiplomski.pdf.pdf - Published Version Jezik dokumenta:Croatian Download (6MB) | Preview |
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Herceg_Stjepan_autorska_izjava_završni rad_2019.pdf - Published Version Restricted to Repository staff only Jezik dokumenta:Croatian Download (486kB) |
Abstract (Croatian)
U sklopu završnog rada proračunat je i projektiran sustav grijanja i pripreme potrošne tople vode stambeno-poslovne zgrade. Zgrada je površine 3800 m2 i nalazi se na području grada Splita. Projektni toplinski gubici izračunati su prema normi HRN EN 12831 i iznose 118 kW. Proračun godišnje potrebne toplinske energije za grijanje proveden je prema „Algoritam za proračun potrebne energije za grijanje i hlađenje prostora prema HRN EN ISO 13790“ i iznosi 17 kW/m2a za poslovni prostor i 24 kW/m2 za stambeni dio zgrade. Toplinska energija potrebna za pripremu potrošne tople vode iznosi 36480 kWh/a. Sustav grijanja kao izvor topline koristi visokotemperaturnu dizalicu topline učina 180 kW. Za grijanje pojedinih prostorija zgrade predviđeni su radijatori do kojih cirkulacijske pumpe kroz dvocijevni sustav dobavljaju ogrjevnu voda temperaturnog režima 55/40°C. U sustav se ugrađuje međuspremnik ogrjevne vode kapaciteta 940 l za mirniji rad dizalice topline. U sustavu grijanja nalazi se još i ekspanzijska posuda volumena 800 l za kompenzaciju promjene volumena vode u sustavu i kalorimetri koji mjere potrošnju toplinske energije u svakoj vlasničkoj cjelini. Sustav pripreme potrošne tople vode zamišljen je kao akumulacijski sa dva spremnika kapaciteta 740 l. Sustav grijanja kao i sustav pripreme potrošne tople vode opremljeni su potrebnom armaturom i regulacijskim elementima za potpuno automatski rad. U prilogu se nalaze dispozicijski crteži koji definiraju raspored opreme po etažama i funkcionalna shema spajanja sustava i automatske regulacije te shema usponskih vodova ogrjevnih tijela.
Abstract
As part of this bachelor thesis a heating system and a domestic hot water system were designed forthe residential business building. Total area of the building is 3800 m2 and it is located in the area of the City of Split. The total projected losses of the building, calculated according to the HRN EN 12831 standard, are 118 kW. The annual heat energy required for heating is calculated according to the Algorithm for calculation of the necessary energy for heating and cooling the building, according to HRN ISO 13790 and is 17 kWh/m2a for business space and 24 kWh/m2a for the residential part of the building. The heat energy required for the preparation of domestic hot water is 36480 kWh/a. The heating system as a heat source uses a high-temperature heat pump of 180 kW. For heating of individual building rooms, radiators are provided to which the circulation pumps through the two-way pipe system supply the heating water of 55/40°C. The system is equipped with a 940 l hot water tank for a better work of a heat pump. In the heating system, there is also an expansion vessel of 800 l to compensate for the change in volume of water in the system and calorimeters that measure the consumption of heat energy in each property. The domestic hot water system is designed as an accumulation system with two storage tanks of 740 l capacity each. The heating system as well as the domestic hot water system is equipped with the required armature and control elements for fully automatic operation. Along with this work, the disposition drawings that define the layout of the equipment by floor and the functional scheme of the system connection and the automatic regulation and runaway heating system diagram are submitted.
Item Type: | Thesis (Undergraduate thesis) |
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Uncontrolled Keywords: | toplinska ugodnost; grijanje; dizalica topline |
Keywords (Croatian): | thermal comfort; heating; heat pump |
Subjects: | TECHNICAL SCIENCE > Mechanical Engineering |
Divisions: | 300 Department of Thermodynamics, Thermal and Process Engineering > 320 Chair of Thermal and Process Engineering |
Date Deposited: | 25 Feb 2019 12:06 |
Last Modified: | 13 Nov 2019 09:40 |
URI: | http://repozitorij.fsb.hr/id/eprint/9182 |
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