Design, rate, and simulate heat transfer equipment

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TRI Xchanger Suite®, from the global leader in process heat transfer and heat exchanger technology, includes components for heat transfer and associated calculations of heat exchangers and fired heaters. HTRI’s calculation methods are backed by 50 years of extensive research and data collected on industrially relevant heat transfer equipment. Based on the results of this ongoing effort, we update our methods to meet your evolving engineering needs.

All Xchanger Suite components are highly flexible, allowing rigorous specification of the exchanger geometry. This capability makes the best use of HTRI’s proprietary heat transfer and pressure drop correlations and allows the most accurate performance predictions possible for all exchangers.

Detailed information about Xchanger Suite and the nine individual components can be found below.

Xist Xhpe Xjpe

Design, rate, and simulate virtually any type of shell-and-tube exchanger including kettles, hairpins, thermosiphons, reflux condensers, and falling film evaporators. Xist supports all standard TEMA exchanger types, and includes integrated tools for flow-induced vibration calculations and tube layout design.

Xace

Design, rate, and simulate air coolers and economizers including natural draft (fans off) and forced draft conditions. Xace includes vendor fan selection calculations and options to simulate the effect of flow and temperature maldistribution.

Xfh

Simulate the performance of cylindrical and box heaters. Xfh uses a Hottel zoning method to calculate localized radiant and process side performance. Additional combustion and convection section modules allow evaluation of a complete process fired heater. Mac os 10.10.5 dmg.

Xpfe

Simulate and design multi-stream axial and crossflow plate-fin exchangers using an incremental model with research-based heat transfer and pressure drop correlations. Xpfe contains graphical layout tools that make even complex stream arrangements easy to create.

Xphe

Design, rate, and simulate plate-and-frame exchangers using user-defined plate types or plates selected from an internal manufacturers’ databank. Xphe contains a port maldistribution model that calculates the flow through each plate channel.

Xspe

Rate and simulate single-phase spiral plate exchangers using an incremental model with HTRI-validated heat transfer and pressure drop correlations. Xspe models cocurrent and countercurrent spiral flow (Type I exchangers).

Xvib

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Calculate flow-induced vibration for a tube in a shell-and-tube exchanger using a rigorous finite element based algorithm. Xvib considers fluidelastic instability and vortex shedding mechanisms for both plain and U-tubes.

HTRI Xchanger Suite® Educational is a version of Xchanger Suitecustomized for use by educational institutions. Supported by extensive data collected for over 55 years on our industrial-scale heat transfer equipment, this software quickly and accurately handles heat exchanger calculations.

Included in this single-integrated environment are three powerful design, rating, and performance simulation modules:

  • Xace - crossflow heat exchangers (air coolers and heat recovery bundles)
  • Xist - shell-and-tube heat exchangers
  • Xphe - compact heat exchangers (plate-and-frame)

Please note that licenses for HTRI Xchanger Suite Educational do not include access to any of our commercial products such as eLibrary, Service Packs, or the HTRI Design Manual.

Program Capabilities

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Cross flow (Xace)

  • Design, rate, and simulate air-cooled heat exchangers (with fans on or off), heat recovery bundles, and natural draft exchangers.
  • Enter any tubeside and outside process conditions.
  • Access many special features, such as
    • links to vendor-supplied fan selection software
    • outside maldistribution (of both inlet air flow and temperature)
    • multiple services in one bay

Shell-and-tube (Xist)

  • Design, rate, and simulate shell-and-tube exchangers.
  • Evaluate geometries including
    • TEMA E, F, G, H, J, K, and X shells
    • kettle and thermosiphon reboilers including piping
    • falling film evaporators
    • tubeside reflux condensers
  • Analyze single-phase, condensation, and boiling processes.
  • Preview rigorous tube layout using interactive drawing shown to scale.

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Compact (Xphe)

  • Design, rate, and simulate plate-and-frame exchangers.
  • Calculate each plate channel incrementally using local properties and process conditions.
  • Use unique research-based port maldistribution procedure to determine flow through each plate channel.
  • Analyze single-phase, condensation, and boiling processes.

System Requirements

You must have the following equipment to run the components successfully:

  • Microsoft® Windows® 8.1, Windows 10, Server 2012, Server 2016, or Server 2019
  • 32- or 64-bit processor
  • 1 GB RAM
  • Up to 500 MB available hard drive space for the selected modules
  • SVGA (800 × 600 resolution) or higher graphics adapter and display
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Contact htri@htri.net for more information on Xchanger Suite Educational.