Flow Simulator
Flow Simulator

2023.1

  1. Home
  2. Solver Technical Manual

  3. General Functions and Routines

  4. Heat Transfer Coefficients (HTC) Correlations
  5. Body in Crossflow

  6. Cylinder

  • What's New
  • Get Started
  • Tutorials
  • Quick Start Guide
  • Graphical User Interface
  • Solver Technical Manual
  • Flow Simulator General Guide
Index
Flow Simulator

2023.1

Flow Simulator
  • What's New

    View new features for Flow Simulator 2023.1.

  • Get Started

    Flow Simulator is an integrated flow, heat transfer, and combustion design software that enables multidisciplinary engineering simulations to optimize machine design.

  • Tutorials

    Discover Flow Simulator functionality with interactive tutorials.

  • Quick Start Guide

  • Graphical User Interface

  • Solver Technical Manual

    • General Overview
    • Inbuilt Material Properties
    • Chambers
    • Elements

    • Components

    • Cavities
    • Thermal Network
    • Controllers
    • User Defined Element (UDE)
    • General Functions and Routines

      • Element Momentum Loss: Upstream Chamber Dynamic Head Loss
      • Reynolds Number KLoss Corrections
      • Element Exit K Loss Corrections
      • Friction Correlations
      • Heat Transfer Coefficients (HTC) Correlations
        • Mixed Laminar Turbulent Duct Nu

        • Turbulent Duct Nu

        • Impingement Nu

        • Thin Gap Nu

        • Motor Component Internal Nu

        • Free Convection Nu

        • Body in Crossflow

          • Cylinder

          • Blunt Body

      • Element Heat Addition

    • References
  • Flow Simulator General Guide

Flow Simulator
Flow Simulator

2023.1

  1. Home
  2. Solver Technical Manual

  3. General Functions and Routines

  4. Heat Transfer Coefficients (HTC) Correlations
  5. Body in Crossflow

  6. Cylinder

  • What's New
  • Get Started
  • Tutorials
  • Quick Start Guide
  • Graphical User Interface
  • Solver Technical Manual
  • Flow Simulator General Guide
Index

Cylinder

Churchill-Bernstein (Cylinder in Cross Flow):

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