Energy modernisation of Adytum Kft. (8654 Ságvár — hrsz 0247/3) on site_x000D_ (Q3934542): Difference between revisions

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Property / summary
 
116 pcs Jinko MAXIM 315 W monocrystalline solar module, the conversion between DC and AC is provided by 1 Pcs Sun Trio Plus 40K 3-phase inverter capable of Wifi communication. Solar panels are placed on a supporting structure on the roof. Installed over current and overvoltage protection equipment, as well as other materials. The construction cost includes the delivery of the components of the system to the site, the on-site assembly and installation of the system by professionals, as well as the authorisation procedure to be carried out at the network service provider. The wiring is designed and fixed in such a way that the wind and other external (snow, ice, etc.) effects cannot cause damage to the wiring or damage to insulation anywhere. For the design of the solar panel system, 54/2014 (XII. 5) BM Decree of the National Fire Protection Regulation and TVMI 7.2:2016.07.01. Fire Protection Technical Directive is valid and employees! When forming a string from solar modules, we strive to bring the voltage of the inverter into the operating range of the inverter even in the case of low intensity solar radiation (~200 W/m²). Inverters are inverters approved by the network provider. The installation of the inverters is located inside the building. The household-sized small power plant will connect to the user network via an overcurrent protection device, with fixed connection, subject to the conditions set by the power supplier. (English)
Property / summary: 116 pcs Jinko MAXIM 315 W monocrystalline solar module, the conversion between DC and AC is provided by 1 Pcs Sun Trio Plus 40K 3-phase inverter capable of Wifi communication. Solar panels are placed on a supporting structure on the roof. Installed over current and overvoltage protection equipment, as well as other materials. The construction cost includes the delivery of the components of the system to the site, the on-site assembly and installation of the system by professionals, as well as the authorisation procedure to be carried out at the network service provider. The wiring is designed and fixed in such a way that the wind and other external (snow, ice, etc.) effects cannot cause damage to the wiring or damage to insulation anywhere. For the design of the solar panel system, 54/2014 (XII. 5) BM Decree of the National Fire Protection Regulation and TVMI 7.2:2016.07.01. Fire Protection Technical Directive is valid and employees! When forming a string from solar modules, we strive to bring the voltage of the inverter into the operating range of the inverter even in the case of low intensity solar radiation (~200 W/m²). Inverters are inverters approved by the network provider. The installation of the inverters is located inside the building. The household-sized small power plant will connect to the user network via an overcurrent protection device, with fixed connection, subject to the conditions set by the power supplier. (English) / rank
 
Normal rank
Property / summary: 116 pcs Jinko MAXIM 315 W monocrystalline solar module, the conversion between DC and AC is provided by 1 Pcs Sun Trio Plus 40K 3-phase inverter capable of Wifi communication. Solar panels are placed on a supporting structure on the roof. Installed over current and overvoltage protection equipment, as well as other materials. The construction cost includes the delivery of the components of the system to the site, the on-site assembly and installation of the system by professionals, as well as the authorisation procedure to be carried out at the network service provider. The wiring is designed and fixed in such a way that the wind and other external (snow, ice, etc.) effects cannot cause damage to the wiring or damage to insulation anywhere. For the design of the solar panel system, 54/2014 (XII. 5) BM Decree of the National Fire Protection Regulation and TVMI 7.2:2016.07.01. Fire Protection Technical Directive is valid and employees! When forming a string from solar modules, we strive to bring the voltage of the inverter into the operating range of the inverter even in the case of low intensity solar radiation (~200 W/m²). Inverters are inverters approved by the network provider. The installation of the inverters is located inside the building. The household-sized small power plant will connect to the user network via an overcurrent protection device, with fixed connection, subject to the conditions set by the power supplier. (English) / qualifier
 
point in time: 8 February 2022
Timestamp+2022-02-08T00:00:00Z
Timezone+00:00
CalendarGregorian
Precision1 day
Before0
After0

Revision as of 21:47, 8 February 2022

Project Q3934542 in Hungary
Language Label Description Also known as
English
Energy modernisation of Adytum Kft. (8654 Ságvár — hrsz 0247/3) on site_x000D_
Project Q3934542 in Hungary

    Statements

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    10,581,848 forint
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    29,261.03 Euro
    0.00276521 Euro
    3 December 2021
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    52,594.201 Euro
    0.0027336256 Euro
    15 December 2021
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    19,239,723.636 forint
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    55.0 percent
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    15 February 2020
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    18 April 2021
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    ADYTUM Szolgáltató Korlátolt Felelősségű Társaság
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    46°49'22.66"N, 18°4'33.20"E
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    116 db Jinko MAXIM 315 W-os monokristályos napelem modul, az egyenáram és a váltóáram közötti konverziót 1 db Sun Trio Plus 40K típusú, 3 fázisú inverter biztosítja, mely Wifi kommunikációra képes. A napelemek tetőszerkezeten elhelyezett tartószerkezetre kerülnek. Beépítésre kerülnek Túláram és túlfeszültség védelemi berendezések, valamint egyéb anyagok. A kivitelezési költség tartalmazza a rendszer elemeinek helyszínre szállítását, szakemberek által helyszíni összeszerelését és beüzemelését, valamint a hálózati szolgáltatónál lefolytatandó engedélyezési eljárást. A kábelezést úgy alakítjuk ki és úgy rögzítjük, hogy a szél és egyéb külső (hó, jég, stb.) hatások sehol se okozhassák a kábelezés megrongálódását, szigetelés sérülését. A napelemes rendszer kialakításánál az 54/2014 (XII. 5) BM rendelet az Országos Tűzvédelmi Szabályzat és a TvMI 7.2:2016.07.01. Tűzvédelmi Műszaki Irányelvben leírtak érvényesek és alkalmazottak! A napelem modulokból összeállított füzér (string), kialakításakor törekedünk arra, hogy alacsony intenzitású napsugárzás (~200 W/m2) esetén is az inverter működési tartományába essen a füzér feszültsége. Az inverterek a hálózati szolgáltató által jóváhagyott inverterek. Az inverterek telepítési helye az épületen belül található. A háztartási méretű kiserőmű a felhasználói hálózatra – túláramvédelmi készüléken keresztül fog csatlakozni, fix bekötéssel, az áramszolgáltató által meghatározott feltételek betartásával. (Hungarian)
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    116 pcs Jinko MAXIM 315 W monocrystalline solar module, the conversion between DC and AC is provided by 1 Pcs Sun Trio Plus 40K 3-phase inverter capable of Wifi communication. Solar panels are placed on a supporting structure on the roof. Installed over current and overvoltage protection equipment, as well as other materials. The construction cost includes the delivery of the components of the system to the site, the on-site assembly and installation of the system by professionals, as well as the authorisation procedure to be carried out at the network service provider. The wiring is designed and fixed in such a way that the wind and other external (snow, ice, etc.) effects cannot cause damage to the wiring or damage to insulation anywhere. For the design of the solar panel system, 54/2014 (XII. 5) BM Decree of the National Fire Protection Regulation and TVMI 7.2:2016.07.01. Fire Protection Technical Directive is valid and employees! When forming a string from solar modules, we strive to bring the voltage of the inverter into the operating range of the inverter even in the case of low intensity solar radiation (~200 W/m²). Inverters are inverters approved by the network provider. The installation of the inverters is located inside the building. The household-sized small power plant will connect to the user network via an overcurrent protection device, with fixed connection, subject to the conditions set by the power supplier. (English)
    8 February 2022
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    Ságvár, Somogy
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    Identifiers

    GINOP-4.1.4-19-2020-01248
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