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Discrete Ordinates (DO): Intermediate Training Package, 5 CFD Simulations

Original price was: $780.00.Current price is: $249.00. Student Discount

Short Description List:

  1. Master advanced DO radiation modeling through five sophisticated CFD simulations
  2. Learn complex solar thermal applications with Phase Change Materials (PCM)
  3. Explore conjugate heat transfer in high-performance solar systems
  4. Develop expertise in renewable energy system optimization
  5. Perfect your skills in multi-physics thermal analysis
  6. Apply professional-grade simulation techniques to innovative solar technologies
Click on Add To Cart and obtain the Geometry file, Mesh file, and a Comprehensive ANSYS Fluent Training Video.

To Order Your Project or benefit from a CFD consultation, contact our experts via email ([email protected]), online support tab, or WhatsApp at +44 7443 197273.

There are some Free Products to check our service quality.
If you want the training video in another language instead of English, ask it via [email protected] after you buy the product.

Solar Heat Exchanger, ANSYS Fluent CFD Simulation Tutorial

  • The problem numerically simulates the Solar Heat Exchanger using ANSYS Fluent software.
  • We design the 3-D model by the Design Modeler software.
  • We Mesh the model by ANSYS Meshing software, and the element number equals 304200.
  • We use Discrete Ordinates (DO) and Solar Ray Tracing to consider radiation heat transfer.

PCM Solar Collector CFD Simulation by ANSYS Fluent Tutorial

  • The problem numerically simulates PCM Solar Collector using ANSYS Fluent software.
  • We design the 3-D model by the Design Modeler software.
  • We Mesh the model by ANSYS Meshing software, and the element number equals 969866.
  • We perform this simulation as unsteady (Transient).
  • We use the Solidification and Melting model to define phase change materials.
  • We use the Discrete Ordinate (DO) to define radiation heat transfer.

Flat Plate Solar Collector, Conjugated Heat Transfer (CHT)

  • The current CFD Analysis simulates the Flat Plate Solar Collector Conjugated Heat Transfer via ANSYS Fluent software.
  • We have designed the initial geometry using SpaceClaim software and created the mesh on this geometry using Fluent Meshing software.
  • The mesh type is polyhedra with  1868457 cells.
  • Conduction and Convection phenomena are involved in this simulation.
  • The Discrete Ordinate Radiation model is used.
  • The Energy Equation is enabled to capture the temperature.

Solar Indirect Dryer CFD Simulation, ANSYS Fluent

  • In this project, the airflow within a solar indirect dryer is simulated using ANSYS Fluent.
  • The geometry was designed in SpaceClaim, and a mesh with 1,330,000 elements was generated using ANSYS Meshing.
  • In this simulation, the food trays are modeled as porous.
  • DO is chosen for the radiation model.
  • The density model in the material is chosen as incompressible ideal gas.

PCM-Enhanced PV Panel, Ansys Fluent CFD Simulation

  • In this product, we conducted a comprehensive study comparing two distinct cases1) A conventional PV panel without pCM 2) An enhanced system incorporating PCM cooling technology
  • comprehensive three-dimensional model was developed using ANSYS SpaceClaim,The computational domain was discretized using ANSYS Meshing software, employing a structured grid approach with approximately 1,000,000 elements
  • The Solidification and Melting model was activated to accurately capture the phase change dynamics of the PCM
  • The Discrete Ordinates (DO) radiation model was implemented to account for radiative heat transfer
  • Solar Ray Tracing was enabled for precise solar load calculations

Special Offers For All Products

If you need the Geometry designing and Mesh generation training video for all the products, you can choose this option.
The journal file in ANSYS Fluent is used to record and automate simulations for repeatability and batch processing.
Editable geometry and mesh allows users to create and modify geometry and mesh to define the computational domain for simulations.
The case and data files in ANSYS Fluent store the simulation setup and results, respectively, for analysis and post-processing.
Geometry, Mesh, and CFD Simulation methodologygy explanation, result analysis and conclusion
If you want training in any language other than English, we can provide you with a subtitled video in your language.

Special Offers For Single Product

If you need the Geometry designing and Mesh generation training video for one product, you can choose this option.
If you need expert consultation through the training video, this option gives you 1-hour technical support.
The journal file in ANSYS Fluent is used to record and automate simulations for repeatability and batch processing.
editable geometry and mesh allows users to create and modify geometry and mesh to define the computational domain for simulations.
The case and data files in ANSYS Fluent store the simulation setup and results, respectively, for analysis and post-processing.
Geometry, Mesh, and CFD Simulation methodologygy explanation, result analysis and conclusion
The MR CFD certification can be a valuable addition to a student resume, and passing the interactive test can demonstrate a strong understanding of CFD simulation principles and techniques related to this product.
Enhancing Your Project: Comprehensive Consultation and Optimization Services
Collaborative Development of a Conference Paper on Cutting-Edge Topics with MR CFD
Collaborative Publication Opportunity: Contribute to an ISI Article and Get Featured in Scopus and JCR-Indexed Journals
If you want training in any language other than English, we can provide you with a subtitled video in your language.

Description

 

Discrete Ordinates (DO) Radiation Model: ANSYS Fluent Training Package, 5 CFD Simulations for Intermediate Users

### Comprehensive Advanced Simulation Training

This specialized training package guides intermediate users through five sophisticated applications of Discrete Ordinates radiation modeling, focusing on advanced solar thermal systems and phase change materials. Using ANSYS Fluent, participants master complex multi-physics simulations essential for modern renewable energy applications.

### Technical Depth and Innovation

The course progresses from fundamental solar collector designs to cutting-edge PCM-enhanced systems, emphasizing the integration of multiple heat transfer mechanisms and phase change phenomena. Each module builds upon established knowledge while introducing advanced concepts in thermal system design.

### Advanced Applications and Analysis

#### Solar Collection Systems

Beginning with flat plate solar collectors, the course explores conjugate heat transfer mechanisms and advanced heat exchanger designs. These foundational modules establish sophisticated modeling techniques while addressing real-world performance optimization challenges.

#### Phase Change Material Integration

The course advances into PCM applications, covering both solar collectors and PV panel enhancement. These modules demonstrate the complex interaction between radiation, heat transfer, and phase change phenomena, crucial for modern energy storage solutions.

#### Industrial Process Applications

The final segment focuses on solar indirect drying systems, combining radiation modeling with practical industrial processes. This application synthesizes previous concepts while introducing additional complexity in process optimization.

### Professional Implementation

The course structure ensures a deep understanding of advanced radiation modeling while maintaining a focus on practical applications. From basic solar thermal systems to sophisticated PCM-enhanced solutions, each module contributes to the mastery of simulation techniques. This approach equips intermediate users with advanced skills for innovative solar system design and optimization, meeting industry standards for professional thermal analysis.

The comprehensive coverage bridges the gap between theoretical understanding and practical implementation, preparing engineers for real-world challenges in renewable energy system design and thermal performance optimization.

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