solidworks flow simulation 2019

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SOLIDWORKS Flow Simulation Focused, Proven, Credible. Steady-state Fluid Flow Internal & External Fluid Flow Time-dependent Fluid Flows Combustible Mixtures Mixed Flows Subsonic, Transonic and Supersonic Flow Free, Forced and Mixed Convection Laminar and Turbulent Fluid Flows Porous Media Fluid Flows in the Models with Moving and Rotating Surfaces Heat Conduction in Fluid, Solid and Porous Media with/without Conjugate Heat Transfer and/or Contact Heat Resistance between Solids Compressible Gas and Incompressible Fluids Real Gases Heat Conduction in Solids Only Joule Heating due to Direct Electric Current in Electrically Conducting Solids Heat Sources due to Peltier Effect Gravitational Effects Separated Flows – Fluid Sub-domains Fully Embedded in SOLIDWORKS 3D CAD Ease of Use/Intuitiveness/Concurrent Engineering Local and Worldwide Support Services Support SOLIDWORKS Configurations FLOW SIMULATION HVAC (ADD-ON) ELECTRONIC COOLING (ADD-ON) Sector Periodicity 2D/3D Flow Radiation Heat Transfer Between Solids Flow Conditions

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Page 1: SOLIDWORKS Flow Simulation 2019

SOLIDWORKS Flow Simulation

Focused, Proven, Credible.

Steady-state Fluid Flow

Internal & External Fluid Flow

Time-dependent Fluid Flows

Combustible Mixtures

Mixed Flows

Subsonic, Transonic and Supersonic Flow

Free, Forced and Mixed Convection

Laminar and Turbulent Fluid Flows

Porous Media

Fluid Flows in the Models with Moving and Rotating Surfaces

Heat Conduction in Fluid, Solid and Porous Media with/without Conjugate Heat Transfer and/or Contact Heat Resistance between Solids

Compressible Gas and Incompressible Fluids

Real Gases

Heat Conduction in Solids Only

Joule Heating due to Direct Electric Current in Electrically Conducting Solids

Heat Sources due to Peltier E�ect

Gravitational E�ects

Separated Flows – Fluid Sub-domains

Fully Embedded in SOLIDWORKS 3D CAD

Ease of Use/Intuitiveness/Concurrent Engineering

Local and Worldwide Support Services

Support SOLIDWORKS Con�gurations

FLOWSIMULATION

HVAC(ADD-ON)

ELECTRONIC COOLING(ADD-ON)

Sector Periodicity

2D/3D Flow

Radiation Heat Transfer Between Solids

Flow Conditions

Page 2: SOLIDWORKS Flow Simulation 2019

Evaluate gas movement and temperature in working and living environments, as well as lighting applications, concurrent with design using the HVAC applications module. Calculate 8 human comfort parameters including “Predicted Mean Vote” (PMV) and “Predicted Percent Dissatis�ed” (PPD) to measure thermal comfort and identify potential problem areas. Advanced radiation – model absorption of radiation in solid bodies and de�nition of the radiation spectrum for a more accurate radiation simulation. Tracer study – analyze the �ow of a certain admixture (tracer) in the existing carrier �uid.

Comfort Parameters Simulation

SOLIDWORKS Flow Simulation intuitive CFD (computational �uid dynamics) tool enables designers to simulate �uid �ow such as liquid and gas �ow in real world conditions, run “what-if” scenarios, and e�ciently analyze the e�ects of �uid �ow, heat transfer, and related forces on immersed or surrounding components.

Fluid Flow Simulation Electronic Cooling Simulation

Allows simulate �ows with a freely moving interface between two immiscible �uids. The volume of �uid method (VOF) is used for tracking and locating the free-surface or �uid-�uid interface. The following pairs of �uids are available: gas-liquid, liquid-liquid, gas-non-newtonian liquid. Any phase change transition, rotation, porous media and fans are not allowed.Fast Fourier Transformation (FFT) algorithm converts a time signal to the complex frequency domain for transient analysis. The new FFT plot allows time-dependent

Free Surface and Noise Prediction

MechanicalDesign

Mechanical Design

MechanicalDesign

SEACAD Technologies Pte Ltd Sales EnquiryTel: +65 6372 1416Fax: +65 6372 1215Email: [email protected]

28 Genting Lane#08-04/05 Platinum 28Singapore 349585www.seacadtech.com

Technical SupportTel: +65 6226 3784Email: [email protected]

FLOWSIMULATION

HVAC(ADD-ON)

ELECTRONIC COOLING(ADD-ON)

Relative Humidity in Gases and Mixtures of Gases

Two-phase (Fluid + Particles) Flows

Cavitation in Incompressible Water Flows

Equilibrium Volume Condensation of Water from Steam and its In�uence onFluid Flow and Heat Transfer

Tracer Study

Comfort Parameters

Heat Pipes/Thermal joints/Two-resistor Components

Printed Circuit Boards

Thermo - Electric Coolers

Noise Prediction(Steady State and Transient)

Free Surface

Optimize and better the cooling strategy for electronic components concurrent to the design process and its ability to accurately simulate and analyze the special electronic components such as the Two Resistor Components, Heat Pipes and Thermo Electric Coolers.