Improving the energy efficiency of the service in the Bełžu (Q105070): Difference between revisions

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(‎Removed claim: summary (P836): The improvement of the energy efficiency of the Bełžowe building includes: 1.Thermal modernisation of the roof. A surface warming of 238.62 m² is planned. it is planned to perform a layer of sandwich panels with PIR or PUR foam. 2.Change in a surface of 120.8 m² 3. replacement of windows and windows with a surface area of 54.8 m² 4.variation of the existing source of heat from a coal boiler to a biomass boiler together with a modernisation of...)
(‎Created claim: summary (P836): Improving the energy efficiency of the service building in Bełżec includes: 1.Thermomodernisation of roof parts. Warming of the ceiling with an area of 238.62 m² is planned from sandwich panels with a core of PIR or PUR foam. 2.Replace a door of 120.8 m² 3.Exchange of windows and luxpheres with an area of 54.8 m² 4.Replace the existing heat source of coal boiler into biomass boiler with the modernisation of the central heating system with the us...)
Property / summary
 
Improving the energy efficiency of the service building in Bełżec includes: 1.Thermomodernisation of roof parts. Warming of the ceiling with an area of 238.62 m² is planned from sandwich panels with a core of PIR or PUR foam. 2.Replace a door of 120.8 m² 3.Exchange of windows and luxpheres with an area of 54.8 m² 4.Replace the existing heat source of coal boiler into biomass boiler with the modernisation of the central heating system with the use of 1°K heater valves with the possibility of remote control of settings as an energy management system, equipped with heat meters and schedule programmer. 5. Modernisation of the central heating system: replacement of the hot water tank for bivalent tank with electric heater and heat flow from the planned boiler for biomass and cooperating with the existing solar installation. Execution of the necessary installation. Installation of the heat counter on the exit of the reservoir and the water meter on the release of cold water. 6.Production of photovoltaic installation with a power of 10.8 kW 7.Replacement of luminaires with LED luminaires. 8.Reconstruction of the compressed air system by removing two piston compressors and replacing them with one screw compressor with lower power and better efficiency. Sealing the installation. 9.Application of the energy management system. (English)
Property / summary: Improving the energy efficiency of the service building in Bełżec includes: 1.Thermomodernisation of roof parts. Warming of the ceiling with an area of 238.62 m² is planned from sandwich panels with a core of PIR or PUR foam. 2.Replace a door of 120.8 m² 3.Exchange of windows and luxpheres with an area of 54.8 m² 4.Replace the existing heat source of coal boiler into biomass boiler with the modernisation of the central heating system with the use of 1°K heater valves with the possibility of remote control of settings as an energy management system, equipped with heat meters and schedule programmer. 5. Modernisation of the central heating system: replacement of the hot water tank for bivalent tank with electric heater and heat flow from the planned boiler for biomass and cooperating with the existing solar installation. Execution of the necessary installation. Installation of the heat counter on the exit of the reservoir and the water meter on the release of cold water. 6.Production of photovoltaic installation with a power of 10.8 kW 7.Replacement of luminaires with LED luminaires. 8.Reconstruction of the compressed air system by removing two piston compressors and replacing them with one screw compressor with lower power and better efficiency. Sealing the installation. 9.Application of the energy management system. (English) / rank
 
Normal rank
Property / summary: Improving the energy efficiency of the service building in Bełżec includes: 1.Thermomodernisation of roof parts. Warming of the ceiling with an area of 238.62 m² is planned from sandwich panels with a core of PIR or PUR foam. 2.Replace a door of 120.8 m² 3.Exchange of windows and luxpheres with an area of 54.8 m² 4.Replace the existing heat source of coal boiler into biomass boiler with the modernisation of the central heating system with the use of 1°K heater valves with the possibility of remote control of settings as an energy management system, equipped with heat meters and schedule programmer. 5. Modernisation of the central heating system: replacement of the hot water tank for bivalent tank with electric heater and heat flow from the planned boiler for biomass and cooperating with the existing solar installation. Execution of the necessary installation. Installation of the heat counter on the exit of the reservoir and the water meter on the release of cold water. 6.Production of photovoltaic installation with a power of 10.8 kW 7.Replacement of luminaires with LED luminaires. 8.Reconstruction of the compressed air system by removing two piston compressors and replacing them with one screw compressor with lower power and better efficiency. Sealing the installation. 9.Application of the energy management system. (English) / qualifier
 
point in time: 17 October 2020
Timestamp+2020-10-17T00:00:00Z
Timezone+00:00
CalendarGregorian
Precision1 day
Before0
After0

Revision as of 17:50, 17 October 2020

Project in Poland financed by DG Regio
Language Label Description Also known as
English
Improving the energy efficiency of the service in the Bełžu
Project in Poland financed by DG Regio

    Statements

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    323,119.3 zloty
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    77,548.63 Euro
    13 January 2020
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    497,106.64 zloty
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    119,305.59 Euro
    13 January 2020
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    65.0 percent
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    3 December 2018
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    31 December 2019
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    JACEK ZABANDŻAŁA - SERWIS SAMOCHODOWY BOSCH
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    Poprawa efektywności energetycznej budynku serwisu w Bełżcu obejmuje: 1.Termomodernizację części dachu. Ocieplenie stropodachu o powierzchni 238,62 m2 planuje się wykonać z płyt warstwowych z rdzeniem z pianki PIR lub PUR. 2.Wymianę drzwi o powierzchni 120,8 m2 3.Wymianę okien i luksferów o powierzchni 54,8 m2 4.Wymianę istniejącego źródła ciepła kotła węglowego na kocioł opalany biomasą wraz z modernizacją instalacji c.o. z zastosowaniem termozaworów grzejnikowych o czułości 1°K z możliwością zdalnego sterowania nastawami jako system zarządzania energią, wyposażonych w ciepłomierz i programator harmonogramu pracy. 5. Modernizację instalacji c.w.u. : wymiana zasobnika c.w.u. na zbiornik biwalentny z grzałką elektryczną i obiegiem ciepła z planowanego kotła na biomasę oraz współpracującego z istniejącą instalacją solarną . Wykonanie niezbędnej instalacji . Zamontowanie licznika ciepła na wyjściu z zasobnika oraz wodomierza na dopuszczeniu zimnej wody. 6.Wykonanie instalacji fotowoltaicznej o mocy 10,8 kW 7.Wymianę opraw oświetleniowych na oprawy LED. 8.Przebudowę instalacji sprężonego powietrza likwidując dwie sprężarki tłokowe i zastępując je jedną sprężarką śrubową o mniejszej mocy i lepszej sprawności . Uszczelnienie instalacji. 9.Zastosowanie systemu zarządzania energią. (Polish)
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    Improving the energy efficiency of the service building in Bełżec includes: 1.Thermomodernisation of roof parts. Warming of the ceiling with an area of 238.62 m² is planned from sandwich panels with a core of PIR or PUR foam. 2.Replace a door of 120.8 m² 3.Exchange of windows and luxpheres with an area of 54.8 m² 4.Replace the existing heat source of coal boiler into biomass boiler with the modernisation of the central heating system with the use of 1°K heater valves with the possibility of remote control of settings as an energy management system, equipped with heat meters and schedule programmer. 5. Modernisation of the central heating system: replacement of the hot water tank for bivalent tank with electric heater and heat flow from the planned boiler for biomass and cooperating with the existing solar installation. Execution of the necessary installation. Installation of the heat counter on the exit of the reservoir and the water meter on the release of cold water. 6.Production of photovoltaic installation with a power of 10.8 kW 7.Replacement of luminaires with LED luminaires. 8.Reconstruction of the compressed air system by removing two piston compressors and replacing them with one screw compressor with lower power and better efficiency. Sealing the installation. 9.Application of the energy management system. (English)
    17 October 2020
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    Identifiers

    RPLU.05.01.00-06-0025/18
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