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Gasket Heat Exchanger Plate Evaporator for Continuous Use

Gasket Heat Exchanger Plate Evaporator for Continuous Use

MOQ: 1
τιμή: Διαπραγματεύσιμος
Τυπική Συσκευασία: ξύλινο κουτί
Περίοδος παράδοσης: 5-8 εργάσιμες ημέρες
Μέθοδος πληρωμής: L/C,D/A,D/P,T/T,Western Union
Ικανότητα εφοδιασμού: 100
Πληροφορίες λεπτομέρειας
Τόπος καταγωγής
Κίνα
Μάρκα
Botai
Αριθμό μοντέλου
ΒΟΤΑΙ-8
Χρόνος παράδοσης:
10 εργάσιμες ημέρες
Ορίγιο:
Tian Jin, Κίνα
Παραγωγική ικανότητα:
100000 τεμάχια/έτος
Πίεση σχεδίασης:
2,2m/PA
Τύπος υλικού:
SS304/SS316L
Επισημαίνω:

continuous use heat exchanger gasket

,

plate evaporator heat exchanger

,

heat exchanger plate gasket

Περιγραφή προϊόντων
Gasket Heat Exchanger Plate Evaporator for Continuous Use
Plate evaporators are widely utilized in evaporation applications due to their exceptional heat transfer efficiency, straightforward maintenance procedures, and flexible expansion capabilities.
A plate evaporator system primarily consists of plate preheaters, plate heat exchangers, plate condensers, material pumps, separators, demisters, steam scrubbers, and connecting pipelines. This evaporation equipment employs plate heat exchangers as the primary thermal transfer components throughout the entire system configuration.
Operating Principle
Plate evaporators facilitate heat transfer through partition walls. The material undergoing evaporation is heated beyond its boiling point under corresponding pressure conditions, resulting in continuous boiling. Subsequent separation in gas-liquid separators produces high-concentration liquid and pure saturated water vapor, achieving the desired concentration objectives.
Construction and Assembly
Material and steam channels are alternately combined using identical plates through gasket sealing or welding processes. Available assembly configurations include detachable, semi-welded, and fully-welded types to accommodate various operational requirements.
Key Advantages
  • Superior overall heat transfer efficiency
  • Reduced comprehensive operational costs
  • Minimized consumption of precious metals
  • Compact footprint with reduced space requirements
  • Streamlined operation and maintenance procedures
  • Adjustable evaporation area for process optimization
Plate evaporators demonstrate exceptional heat transfer coefficients, enabling liquids to achieve turbulent flow states efficiently. Their thermal transfer performance typically exceeds tubular evaporators by 2-3 times. The turbulent flow characteristics continuously cleanse heat transfer surfaces, significantly extending scaling cycles and reducing maintenance frequency.
The compact design of plate evaporators occupies only one-third to one-fourth the space of equivalent-capacity tubular evaporators, with heights reduced to approximately one-tenth. Maintenance accessibility is enhanced through simple bolt removal procedures, while expansion capabilities provide adaptability to diverse environmental constraints and space-limited installations.
Plate evaporator assembly showing heat exchanger plates and gasket configuration Industrial plate evaporator installation in processing facility
Application Fields
Plate heat exchangers have achieved widespread implementation across multiple industrial sectors including metallurgy, mining, petroleum, chemical processing, power generation, food production, chemical fibers, paper manufacturing, light textiles, marine applications, and district heating systems. These versatile systems support diverse thermal processes including heating, cooling, evaporation, condensation, sterilization, and waste heat recovery operations.
  • Solar Energy Utilization Systems
  • Chemical Processing Industry
  • Steel Manufacturing Operations
  • Metallurgical Applications
  • Central Heating Infrastructure
  • Marine and Shipping Applications
Plate heat exchanger installation in industrial setting Close-up view of plate evaporator heat transfer surfaces Plate evaporator system components and connections Industrial plate heat exchanger maintenance procedure Plate evaporator in chemical processing application Complete plate evaporator system installation
προϊόντα
λεπτομέρειες για τα προϊόντα
Gasket Heat Exchanger Plate Evaporator for Continuous Use
MOQ: 1
τιμή: Διαπραγματεύσιμος
Τυπική Συσκευασία: ξύλινο κουτί
Περίοδος παράδοσης: 5-8 εργάσιμες ημέρες
Μέθοδος πληρωμής: L/C,D/A,D/P,T/T,Western Union
Ικανότητα εφοδιασμού: 100
Πληροφορίες λεπτομέρειας
Τόπος καταγωγής
Κίνα
Μάρκα
Botai
Αριθμό μοντέλου
ΒΟΤΑΙ-8
Χρόνος παράδοσης:
10 εργάσιμες ημέρες
Ορίγιο:
Tian Jin, Κίνα
Παραγωγική ικανότητα:
100000 τεμάχια/έτος
Πίεση σχεδίασης:
2,2m/PA
Τύπος υλικού:
SS304/SS316L
Ποσότητα παραγγελίας min:
1
Τιμή:
Διαπραγματεύσιμος
Συσκευασία λεπτομέρειες:
ξύλινο κουτί
Χρόνος παράδοσης:
5-8 εργάσιμες ημέρες
Όροι πληρωμής:
L/C,D/A,D/P,T/T,Western Union
Δυνατότητα προσφοράς:
100
Επισημαίνω

continuous use heat exchanger gasket

,

plate evaporator heat exchanger

,

heat exchanger plate gasket

Περιγραφή προϊόντων
Gasket Heat Exchanger Plate Evaporator for Continuous Use
Plate evaporators are widely utilized in evaporation applications due to their exceptional heat transfer efficiency, straightforward maintenance procedures, and flexible expansion capabilities.
A plate evaporator system primarily consists of plate preheaters, plate heat exchangers, plate condensers, material pumps, separators, demisters, steam scrubbers, and connecting pipelines. This evaporation equipment employs plate heat exchangers as the primary thermal transfer components throughout the entire system configuration.
Operating Principle
Plate evaporators facilitate heat transfer through partition walls. The material undergoing evaporation is heated beyond its boiling point under corresponding pressure conditions, resulting in continuous boiling. Subsequent separation in gas-liquid separators produces high-concentration liquid and pure saturated water vapor, achieving the desired concentration objectives.
Construction and Assembly
Material and steam channels are alternately combined using identical plates through gasket sealing or welding processes. Available assembly configurations include detachable, semi-welded, and fully-welded types to accommodate various operational requirements.
Key Advantages
  • Superior overall heat transfer efficiency
  • Reduced comprehensive operational costs
  • Minimized consumption of precious metals
  • Compact footprint with reduced space requirements
  • Streamlined operation and maintenance procedures
  • Adjustable evaporation area for process optimization
Plate evaporators demonstrate exceptional heat transfer coefficients, enabling liquids to achieve turbulent flow states efficiently. Their thermal transfer performance typically exceeds tubular evaporators by 2-3 times. The turbulent flow characteristics continuously cleanse heat transfer surfaces, significantly extending scaling cycles and reducing maintenance frequency.
The compact design of plate evaporators occupies only one-third to one-fourth the space of equivalent-capacity tubular evaporators, with heights reduced to approximately one-tenth. Maintenance accessibility is enhanced through simple bolt removal procedures, while expansion capabilities provide adaptability to diverse environmental constraints and space-limited installations.
Plate evaporator assembly showing heat exchanger plates and gasket configuration Industrial plate evaporator installation in processing facility
Application Fields
Plate heat exchangers have achieved widespread implementation across multiple industrial sectors including metallurgy, mining, petroleum, chemical processing, power generation, food production, chemical fibers, paper manufacturing, light textiles, marine applications, and district heating systems. These versatile systems support diverse thermal processes including heating, cooling, evaporation, condensation, sterilization, and waste heat recovery operations.
  • Solar Energy Utilization Systems
  • Chemical Processing Industry
  • Steel Manufacturing Operations
  • Metallurgical Applications
  • Central Heating Infrastructure
  • Marine and Shipping Applications
Plate heat exchanger installation in industrial setting Close-up view of plate evaporator heat transfer surfaces Plate evaporator system components and connections Industrial plate heat exchanger maintenance procedure Plate evaporator in chemical processing application Complete plate evaporator system installation
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