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TESPy v0.11.2
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TESPy v0.11.2

Get started

  • About & Installation
    • Thermal Engineering Systems in Python
    • Installation and setup
  • Introductory Tutorials
    • Introduction
    • Heat Pump
    • Rankine Cycle
    • Gas Turbine
    • District Heating Network

Explore

  • Building Blocks
    • Networks
    • Solver
    • Components
    • Connections
    • Subsystems: Reusable Component Groups
    • Create Fluid Property Diagrams
    • General configurations
  • Model Library
    • Heat pump design and part load efficiency evaluation
    • CO2 refrigeration system
    • Exergy Analysis of a Ground-Coupled Heat Pump
    • Supercritical CO2 recompression cycle
    • Combined cycle power plant

Build

  • How-to Guides
    • Build a Heat Pump Stepwise
    • How to Generate Stable Starting Values
    • Debug your models efficiently
    • Debugging the solution process
    • Overview of Heat Exchanger Models
    • PowerConnection examples
    • Humid Air Connection
    • Frequently Asked Questions
  • Extend & Customize
    • User defined equations and variables
    • Customize Components
    • How to develop a new component
    • Fluid properties
    • Characteristics
  • Integrate & Optimize
    • Workflow integration using model classes
    • Thermal Power Plant Efficiency Optimization
    • Exergy analysis

Project

  • TESPy in Use
    • Publications and Projects
    • Validation and Benchmarks
    • Publications using or citing TESPy
  • Community & Support
    • Community
    • Contribute to TESPy
    • Support
    • Educational Resources

Reference

  • API Documentation
    • tespy.data module
    • tespy.components package
    • tespy.components.basics package
    • tespy.components.combustion package
    • tespy.components.displacementmachinery package
    • tespy.components.heat package
    • tespy.components.heat_exchangers package
    • tespy.components.nodes package
    • tespy.components.piping package
    • tespy.components.power package
    • tespy.components.reactors package
    • tespy.components.turbomachinery package
    • tespy.connections package
    • tespy.models package
    • tespy.networks package
    • tespy.solver package
    • tespy.tools package
    • tespy.tools.fluid_properties package
  • What’s New
    • v0.10
    • v0.9
    • v0.8
    • v0.7
    • v0.6
    • v0.5
    • v0.4
    • v0.3
    • v0.2
    • v0.1
    • v0.0
  • Literature
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Integrate & Optimize¶

These sections provide information on how to integrate TESPy models with exergy analysis or how to run optimizations.

Class templates for models
_images/class_template_workflow.svg _images/class_template_workflow_darkmode.svg
Workflow integration using model classes
Optimization of a thermal power plant
_images/optimization_result.svg _images/optimization_result_darkmode.svg
Thermal Power Plant Efficiency Optimization
Exergy Analysis
_images/exerpy.svg _images/exerpy_darkmode.svg
Exergy analysis
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Workflow integration using model classes
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Characteristics
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Last updated on Sep 03, 2026