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Zakład uboju bydła w Stoczku
Łukowskim Polska
Paweł Rachwał
Okoliczności:
Instalacja w Stoczku Łukowskim (Polska)
Instalacja uruchomiona w lipcu 2019
Klientem jest rodzinny zakład uboju bydła
200 szt./dziennie
Rozbudowa zakładu o część rozbiorową i
komory do mrożenia mięsa
Wniosek o dofinasowanie ze środków UE
Wniosek o dofinasowanie na f-gazach !
Spotkanie z klientem w trakcie realizacji projektu !
Po spotkaniu niezwłoczna zmiana technologii
instalację na CO2
Bardzo mało czasu na zmiany - klient podpisał już
umowę na dofinansowanie
Problemem jest źle oszacowany budżet
Brak uzgodnień branżowych
#GoNatRefs
f-gazy
Pomieszczenie
[nr-funkcja]
Kubatura
[m2 x h]
Temperatura
[°C]
Wydajność
[kW]
16 - rozbiór 261,4 x 6,2 = 1620 +8 ÷ +10 2x29,3 kW
21 - spedycja 47,4 x 6,2 = 294 +4 ÷ +10 20,1
22 – korytarz 116,1 x 6,2 = 720 +8 ÷ +10 2x26,1 kW
15 – mroźnia (r) 79,5 x 6,2 = 493 -23 ÷ -26 64,0
17 – chłodnia* 84,2 x 6,2 = 522 0 ÷ +4 (-20 ÷-26)* 31,6
20 – mroźnia (s) 98,8 x 6,2 = 612 -23 ÷ -26 64,0
Bilans
Architektura instalacji
Pozycja Funkcja
ELT Parowniki o łącznej mocy 159,6 kW
LTR Wymiennik regeneracyjny (ciecz/ssanie LT)
LT1 CDS 1501B
LT2 CDS 1201B + inverter
DES Chłodnica międzystopniowa
EMT Parowniki o łącznej mocy 162,5 kW
MT1 3 x CD 5001M + inverter
MTp 2 x CD 2500 H + inverter
PHR Odzysk ciepła 245 kW
GC Powietrzna chłodnica gazu 486 kW
EC Wymiennik regeneracyjny (HT/ssanie IT)
RIn Zbiornik czynnika IT (60 bar) + back-up
Zdjęcia z realizacji
Full transcritical industrial meat processing refrigeration system

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Full transcritical industrial meat processing refrigeration system

  • 1.
  • 2. Zakład uboju bydła w Stoczku Łukowskim Polska Paweł Rachwał
  • 3. Okoliczności: Instalacja w Stoczku Łukowskim (Polska) Instalacja uruchomiona w lipcu 2019 Klientem jest rodzinny zakład uboju bydła 200 szt./dziennie Rozbudowa zakładu o część rozbiorową i komory do mrożenia mięsa Wniosek o dofinasowanie ze środków UE
  • 4. Wniosek o dofinasowanie na f-gazach ! Spotkanie z klientem w trakcie realizacji projektu ! Po spotkaniu niezwłoczna zmiana technologii instalację na CO2 Bardzo mało czasu na zmiany - klient podpisał już umowę na dofinansowanie Problemem jest źle oszacowany budżet Brak uzgodnień branżowych #GoNatRefs f-gazy
  • 5. Pomieszczenie [nr-funkcja] Kubatura [m2 x h] Temperatura [°C] Wydajność [kW] 16 - rozbiór 261,4 x 6,2 = 1620 +8 ÷ +10 2x29,3 kW 21 - spedycja 47,4 x 6,2 = 294 +4 ÷ +10 20,1 22 – korytarz 116,1 x 6,2 = 720 +8 ÷ +10 2x26,1 kW 15 – mroźnia (r) 79,5 x 6,2 = 493 -23 ÷ -26 64,0 17 – chłodnia* 84,2 x 6,2 = 522 0 ÷ +4 (-20 ÷-26)* 31,6 20 – mroźnia (s) 98,8 x 6,2 = 612 -23 ÷ -26 64,0 Bilans
  • 6. Architektura instalacji Pozycja Funkcja ELT Parowniki o łącznej mocy 159,6 kW LTR Wymiennik regeneracyjny (ciecz/ssanie LT) LT1 CDS 1501B LT2 CDS 1201B + inverter DES Chłodnica międzystopniowa EMT Parowniki o łącznej mocy 162,5 kW MT1 3 x CD 5001M + inverter MTp 2 x CD 2500 H + inverter PHR Odzysk ciepła 245 kW GC Powietrzna chłodnica gazu 486 kW EC Wymiennik regeneracyjny (HT/ssanie IT) RIn Zbiornik czynnika IT (60 bar) + back-up