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Sanitary Shell & Tube Heat Exchangers

Precise thermal control in the smallest footprint

  • ASME BPE compliant
  • Double tubesheet design to eliminate cross-contamination
  • 20 µin Ra standard; electropolished finish available
Heat Transfer Capacity
Heat Transfer Capacity 5,000,000 BTU/hr
(1465 kW)
Flow Rate
Flow Rate Up to 250 GPM (946 LPM)
Pressure Rating
Pressure Rating Up to 1,500 PSI (104 bar)
Temperature Rating
Temperature Rating Up to 800° F (426° C)
Surface Finish 20 μin Ra Max 15 μin Ra Optional
Electropolish

Applications

Processing Equipment

Provides reliable heating and cooling for industrial processing equipment across a wide range of operating conditions.

Regenerative Heat Transfer

Recovers and reuses process heat to improve energy efficiency and reduce overall operating costs.

Condensing and Evaporating

Efficiently supports phase-change processes for vapor condensation and liquid evaporation in industrial systems.

Specifications

Shell Diameter

.5″ to 5″ OD

(13mm to 127mm)

Connection Types

Tri-Clamp®, sanitary flange, NPT and custom process connections

Overall Length

6″ to  40″

(153mm to 1000mm)

Cleaning Capability

CIP and SIP compatible

Documentation

Material certifications, weld documentation, surface finish reports and testing packages available

Tubesheet Design

Double Tubesheet

Available Materials
  • 316L Stainless Steel
  • Hastelloy C
  • Alloy 20
  • Titanium
  • CVD Coated
  • Others Available

Optimized Thermal Performance

Cross-Contamination Risk Control Double tubesheet design protects product media from utility-side leakage
Precision Thermal Performance High heat transfer capacity supports stable temperatures across demanding process conditions
Maintenance-Free Eliminates the need for gaskets, ensuring a maintenance-free design while avoiding PFAS materials for enhanced environmental safety and compliance.
Sanitary Design Smooth, fully drainable flow paths support effective CIP/SIP procedures while minimizing hold-up volume and reducing contamination risks
Compact Footprint High-performance heat transfer in a space-saving design helps maximize valuable facility and equipment space
Built for Demanding Conditions Robust construction handles high pressures, temperature extremes, and thermal stress for reliable long-term performance.

Best Fit For

Higher flow, capacity, and sanitary construction flexibility are required.

  • Variety of flow sanitary heating and cooling duties
  • Broader-capacity utilities and product applications
  • Clean steam condensing and sub-cooling
  • WFI and PW temperature control
  • Product sampling and high-purity temperature control

This animation illustrates the operating principles of Exergy’s Double Tubesheet Shell & Tube Heat Exchanger, showcasing efficient heat transfer, sanitary construction, and reliable temperature control for pharmaceutical, biotech, food, and beverage applications.

FAQ

Shell & Tube heat exchangers are typically preferred for higher flow rates and larger heat loads where greater heat transfer surface area is required. Tube-in-Tube designs are well suited for lower-flow, high-pressure applications and processes with large temperature differences or significant thermal expansion. Exergy can help determine the best configuration based on your process conditions, space requirements, and performance needs.

Exergy sanitary heat exchangers are available with a standard internal surface finish of 20 µin Ra maximum. Electropolished surfaces down to 15 µin Ra are also available for applications requiring enhanced cleanability and a smoother product-contact surface.

A double tubesheet is recommended when additional protection against cross-contamination between the process and utility fluids is required. The design provides physical separation between the two fluid streams and allows potential leakage to be detected before the fluids can mix. It is commonly specified for pharmaceutical, biotech, WFI, and other high-purity processes.

Yes. Exergy can provide sanitary heat exchangers with electropolished product-contact surfaces for applications requiring enhanced cleanability and high-purity construction. Electropolishing can provide an internal surface finish down to 15 µin Ra.

To properly size a heat exchanger, Exergy typically needs the process and utility fluid types, inlet and desired outlet temperatures, flow rates, operating pressures, and allowable pressure drop. Information about material requirements, connections, available space, surface finish, and other application-specific requirements is also helpful.

Documentation is available based on the heat exchanger and application requirements and may include material certifications, drawings, surface finish documentation, weld documentation, pressure and leak test reports, and other applicable quality records. Additional documentation and validation packages can be provided when specified at the time of order.

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