Shell Tube Condenser
Shell Tube Condenser

Shell Tube Condenser

Shell Tube Condenser Specification

  • Temperature
  • Designed for 40 to 100
  • Number of Pipe
  • 24
  • Diameter
  • Tube: 19 mm / Shell: 300 mm
  • Max Pressure
  • 15 bar
  • Thickness
  • 6 mm (Shell) / 2.5 mm (Tube)
  • Max. Capacity
  • 40 TR
  • Condition
  • New
  • Structure
  • Shell and Tube
  • Liquid Flow Rate
  • 150 LPH
  • Working Presssure
  • Up to 10 bar
  • Power
  • Not Applicable (Passive Device)
  • Weight
  • Approx. 125 kg
  • Dimensions
  • 1500 mm (L) x 300 mm (Outer Diameter)
  • Efficiency
  • Up to 92%
  • Cleaning Access
  • Detachable End Covers
  • Tube Material
  • Copper / Stainless Steel
  • Corrosion Resistance
  • Yes
  • Connection Type
  • Flanged / Threaded
  • Design Standard
  • ASME or DIN Standards
  • Application
  • Water Cooled System, HVAC, Industrial Cooling
  • Heat Transfer Area
  • 7 m²
  • Shell Material
  • Mild Steel / Carbon Steel with Epoxy Coating
  • Mounting
  • Horizontal
 
 

About Shell Tube Condenser

The offered Shell And Tube Condenser is a top-notch device that is typically used with air conditioning and refrigerating system. This tool helps in condensation for the refrigerant in chiller and refrigeration plants. The most suitable refrigerants for the condenser are all HFCs and HCFCs. Owing to its precision design and high build quality, we are experiencing a huge demand for the product in the marketplace. Moreover, this cutting-edge Shell And Tube Condenser does not require frequent maintenance and service in order to function uninterruptedly for a long period of time.      


Superior Heat Transfer and Corrosion Resistance

With tube material options in copper or stainless steel, and a shell crafted from epoxy-coated mild or carbon steel, the condenser ensures efficient heat transfer and long-term resistance to water and environmental corrosion. Ideal for sustained, reliable operation in industrial and HVAC settings.


Engineered for Versatility and Easy Maintenance

The shell and tube structure, designed to ASME or DIN standards, facilitates secure horizontal mounting and simple cleaning through detachable end covers. The design not only supports various installation needs but also keeps ongoing maintenance straightforward and efficient.

FAQs of Shell Tube Condenser:


Q: How does the Shell Tube Condenser support corrosion resistance in demanding applications?

A: The condenser employs tubes made from either copper or stainless steel, both renowned for their corrosion-resistant properties. Additionally, the shell is coated with epoxy, further safeguarding against rust and degradation even in demanding water-cooled and industrial environments.

Q: What is the cleaning and maintenance process for this condenser?

A: The condenser features detachable end covers, providing easy access to the tube bundle. This design allows for convenient cleaning, inspection, and maintenance, ensuring consistent performance and extending service life without complex disassembly.

Q: When should this Shell Tube Condenser be used over other heat exchangers?

A: This unit is ideal for applications requiring high efficiency (up to 92%) and corrosion resistance, such as water-cooled HVAC systems, industrial cooling, and scenarios involving aggressive or high-temperature fluids. Its robust design also suits projects demanding compliance with ASME or DIN standards.

Q: Where is the Shell Tube Condenser typically installed within a cooling system?

A: The condenser is installed horizontally, typically positioned downstream of compressors in chilled water or HVAC circuits, or integrated into industrial process cooling loops. Its compact size and flanged/threaded connections simplify integration into both new and retrofit projects.

Q: What are the main usage benefits of this condenser for industrial and HVAC applications?

A: Key benefits include high heat transfer performance, robust resistance to corrosion, straightforward maintenance due to detachable covers, and a design that supports a wide temperature (40C100C) and pressure (up to 1015 bar) range. This maximizes operational efficiency while minimizing downtime.

Q: How does the condenser meet international safety and performance standards?

A: Manufactured to adhere to stringent ASME or DIN standards, each unit is rigorously tested for structural integrity, pressure resistance, and performance consistency, ensuring global compliance and reliability in diverse operational environments.

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