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Gasket Plate Heat Exchanger Plate Condenser

Gasket Plate Heat Exchanger Plate Condenser

MOQ: 1
prezzo: Negoziabile
Imballaggio standard: scatola di legno
Periodo di consegna: 5-8 giorni lavorativi
Metodo di pagamento: L/C,D/A,D/P,T/T,Western Union
Capacità di approvvigionamento: 100
Informazione dettagliata
Luogo di origine
Cina
Marca
Botai
Numero di modello
Condensatore a piastre
Tempi di consegna:
10 giorni lavorativi
Origio:
Tian Jin, Cina
Capacità produttiva:
100000 pezzi/anno
Pressione di progetto:
2,2 m/PA
Tipo materiale:
SS304/SS316L
Evidenziare:

gasket plate heat exchanger

,

heat exchanger plate condenser

,

plate heat exchanger with gasket

Descrizione di prodotto
Gasket Plate Heat Exchanger Plate Condenser
The plate condenser represents advanced heat exchange technology and serves as a core application category within plate heat exchangers. Utilizing exceptional heat transfer efficiency and compact structural design, this equipment delivers superior performance in applications involving medium-to-low pressure and clean media. Within its operational scope, it is increasingly replacing traditional shell-and-tube heat exchangers and finds extensive use in condensation and heat exchange processes across food, pharmaceutical, HVAC, chemical, and various industrial sectors.
Gasket plate heat exchanger plate condenser unit overview
Core Structure and Working Principle
This plate condenser is constructed by stacking multiple metal plates featuring specially engineered corrugated profiles, creating thin rectangular flow channels between adjacent plates. Hot and cold fluids circulate through separate channels, facilitating heat transfer and condensation processes through the metal plates. The corrugated plate design not only expands the effective heat exchange surface area but also enhances fluid turbulence, significantly improving heat transfer efficiency. Under equivalent flow resistance and pump power consumption conditions, its heat transfer coefficient substantially exceeds that of conventional shell-and-tube heat exchangers.
Internal structure and working principle of plate condenser
Core Product Advantages
  • High Energy Efficiency: Features a heat transfer coefficient of 3,000-7,000 W/(m²*K), representing 3 to 5 times the efficiency of traditional shell-and-tube condensers. With heat recovery rates exceeding 90%, it significantly reduces energy consumption for equivalent heat exchange requirements.
  • Compact Structure: Provides 2 to 5 times more heat exchange area per unit volume compared to shell-and-tube units, with an overall volume approximately 1/5 the size. Lightweight construction and minimal footprint make it ideal for space-constrained installations with flexible mounting options.
  • Easy Maintenance: Frame-type models enable direct plate disassembly by loosening clamping bolts, allowing manual or mechanical cleaning without specialized equipment to minimize downtime. Independent replacement of plates and gaskets reduces maintenance costs.
  • Flexible Adaptability: Heat exchange area can be adjusted by adding or removing plates according to process requirements. Adapts to varying condensation conditions through plate type modifications or flow configuration changes.
Compact design and maintenance advantages of plate condenser
Application Scenarios
This plate condenser is specifically designed for condensation and heat exchange processes involving medium-to-low pressure and clean media. Typical industrial applications include:
  • Food & Beverage Industry: Condensation in milk pasteurization, juice cooling systems, and steam condensation in beer brewing processes
  • HVAC Industry: Refrigerant condensation in central air conditioning systems, heat pump applications, and condensation processes in district heating networks
  • Chemical Industry: Cooling of general chemical reactions, condensation in distillation and concentration of low-viscosity media, and industrial waste heat recovery systems
  • Pharmaceutical Industry: Temperature control in pharmaceutical manufacturing processes and condensation for distilled water preparation
  • Light Industry: Refrigeration systems and steam condensation in small-scale power generation turbine applications
Industrial applications of plate condenser in various sectors Plate condenser installation and operational examples
prodotti
Dettagli dei prodotti
Gasket Plate Heat Exchanger Plate Condenser
MOQ: 1
prezzo: Negoziabile
Imballaggio standard: scatola di legno
Periodo di consegna: 5-8 giorni lavorativi
Metodo di pagamento: L/C,D/A,D/P,T/T,Western Union
Capacità di approvvigionamento: 100
Informazione dettagliata
Luogo di origine
Cina
Marca
Botai
Numero di modello
Condensatore a piastre
Tempi di consegna:
10 giorni lavorativi
Origio:
Tian Jin, Cina
Capacità produttiva:
100000 pezzi/anno
Pressione di progetto:
2,2 m/PA
Tipo materiale:
SS304/SS316L
Quantità di ordine minimo:
1
Prezzo:
Negoziabile
Imballaggi particolari:
scatola di legno
Tempi di consegna:
5-8 giorni lavorativi
Termini di pagamento:
L/C,D/A,D/P,T/T,Western Union
Capacità di alimentazione:
100
Evidenziare

gasket plate heat exchanger

,

heat exchanger plate condenser

,

plate heat exchanger with gasket

Descrizione di prodotto
Gasket Plate Heat Exchanger Plate Condenser
The plate condenser represents advanced heat exchange technology and serves as a core application category within plate heat exchangers. Utilizing exceptional heat transfer efficiency and compact structural design, this equipment delivers superior performance in applications involving medium-to-low pressure and clean media. Within its operational scope, it is increasingly replacing traditional shell-and-tube heat exchangers and finds extensive use in condensation and heat exchange processes across food, pharmaceutical, HVAC, chemical, and various industrial sectors.
Gasket plate heat exchanger plate condenser unit overview
Core Structure and Working Principle
This plate condenser is constructed by stacking multiple metal plates featuring specially engineered corrugated profiles, creating thin rectangular flow channels between adjacent plates. Hot and cold fluids circulate through separate channels, facilitating heat transfer and condensation processes through the metal plates. The corrugated plate design not only expands the effective heat exchange surface area but also enhances fluid turbulence, significantly improving heat transfer efficiency. Under equivalent flow resistance and pump power consumption conditions, its heat transfer coefficient substantially exceeds that of conventional shell-and-tube heat exchangers.
Internal structure and working principle of plate condenser
Core Product Advantages
  • High Energy Efficiency: Features a heat transfer coefficient of 3,000-7,000 W/(m²*K), representing 3 to 5 times the efficiency of traditional shell-and-tube condensers. With heat recovery rates exceeding 90%, it significantly reduces energy consumption for equivalent heat exchange requirements.
  • Compact Structure: Provides 2 to 5 times more heat exchange area per unit volume compared to shell-and-tube units, with an overall volume approximately 1/5 the size. Lightweight construction and minimal footprint make it ideal for space-constrained installations with flexible mounting options.
  • Easy Maintenance: Frame-type models enable direct plate disassembly by loosening clamping bolts, allowing manual or mechanical cleaning without specialized equipment to minimize downtime. Independent replacement of plates and gaskets reduces maintenance costs.
  • Flexible Adaptability: Heat exchange area can be adjusted by adding or removing plates according to process requirements. Adapts to varying condensation conditions through plate type modifications or flow configuration changes.
Compact design and maintenance advantages of plate condenser
Application Scenarios
This plate condenser is specifically designed for condensation and heat exchange processes involving medium-to-low pressure and clean media. Typical industrial applications include:
  • Food & Beverage Industry: Condensation in milk pasteurization, juice cooling systems, and steam condensation in beer brewing processes
  • HVAC Industry: Refrigerant condensation in central air conditioning systems, heat pump applications, and condensation processes in district heating networks
  • Chemical Industry: Cooling of general chemical reactions, condensation in distillation and concentration of low-viscosity media, and industrial waste heat recovery systems
  • Pharmaceutical Industry: Temperature control in pharmaceutical manufacturing processes and condensation for distilled water preparation
  • Light Industry: Refrigeration systems and steam condensation in small-scale power generation turbine applications
Industrial applications of plate condenser in various sectors Plate condenser installation and operational examples
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