Radiation

Mr-CFD offers a complete range of CFD analysis, consulting services and training in Radiation Application

Radiationradiation on building

One of the most important forms of heat transfer is radiation. Radiation occurs at any temperature but the importance ratio of this type of heat transfer increase with the increase of temperature and is proportional to fourth power of temperature. Therefore, in application that temperature is high like combustion (we should use appropriate radiation model to consider fluid effect on radiation rate) it is imperative to model precisely influence of radiation on temperature distribution and relative parameters like combustion performance. Besides in the region with very low pressure or relative vacuum zone that the most important form of heat transfer is radiation. Convection and buoyancy effect is very low and is near to zero. In addition, in this case, we should be noticed that use appropriate model than do not consider effect of fluid effect (scattering). We are highly experienced in modeling and simulation of radiation in various applications using CFD schemes by using ANSYS Fluent software.

In the following, you can see a summary of our project that radiation is considered as a considerable heat transfer form.

  • Radiation sensitivity analysis and finding appropriate radiation model in gas turbine combustion application
  • Effect of heating of a cone storage tank in various hours of a day by solar radiation
  • Investigating the effect of solar radiation on a solar water heater in various hour of a particular day
  • Effect of solar radiation direction and magnitude on thermal of the comfort of buildings
  • Numerical simulation of desalination device performance in various solar radiation
  • Effect of solar radiation on the performance of the dry cooling tower
  • CFD simulation of radiation effect of HVAC performance using façade in a multi-story building

ANSYS Fluent CFD solver provides five models to simulating radiation effects. These models are

  • The discrete ordinate transfer modelradiation
  • P1
  • Rosseland
  • Surface to surface (S2S)
  • Discrete transfer radiation model (DTRM)

In addition, ANSYS Fluent provides a module to predict solar radiation and diffusion magnitude and direction based on location, Time, month and weather condition that is very practical for design building, automotive HVAC. We are highly experienced in designing systems based on solar radiation like passive HVAC heating design for building, solar tracking systems for solar cells.

Mr CFD Company services

Due to the wide range of mechanical science and the different fields of work as well as the abundance of projects, this company offers to view all the products presented in this section. In the absence of any desired project or project close to your request, you can search our portfolios in order to find your eligible project, after all, if you didn’t find any ideal project you can order your project from the services pages on the header of this website. Your order will be reviewed by our experts in the shortest possible time, and if we need more information about the proposed project, we will be in touch with you. After completing the required information to examine the proposed project, and confirming your request, the time, conditions and costs will be sent to you during the contract. This process will take place as soon as possible. If you have any question, you can contact to our online support section (the fixed blue tab below the page). If it is offline, don’t worry, you can post your message, and it will be answered as soon as possible.

Portfolios

These are our latest successful projects.

Cavitation Simulation In Francis Turbine By ANSYS Fluent
Cavitation Simulation in Francis Turbine by ANSYS Fluent
Free Surface Flows (Multiphase), Mechanical, Renewable, Turbomachinery

Cavitation Simulation in Francis Turbine by ANSYS Fluent

Cavitation simulation in Francis turbine by ANSYS Fluent One of the most prevalent applications of fluid mechanics is Turbomachinery designing.…

Combustion Chamber In The Gas Turbine Engine By ANSYS Fluent
Combustion chamber in the gas turbine engine by ANSYS Fluent
Combustion, Heat Transfer, Mechanical, Reacting Flows and Combustion, Single-Phase, Non-Reacting Flows

Combustion chamber in the gas turbine engine by ANSYS Fluent

CFD Simulation of the combustion chamber in the gas turbine engine by the ANSYS Fluent software Over the past twenty…

Air Conditioning CFD Simulation Of The Surgery Room
Air conditioning CFD simulation of the surgery room
Heat Transfer, Mechanical, Single-Phase, Non-Reacting Flows

Air conditioning CFD simulation of the surgery room

Air conditioning CFD simulation of the surgery room using the ANSYS Fluent software One of the most important hazards in…

3-blade Horizontal Axis Wind Turbine (HAWT)-CFD Simulation
3-blade horizontal axis wind turbine (HAWT)-CFD simulation
Aerospace, Mechanical, Single-Phase, Non-Reacting Flows

3-blade horizontal axis wind turbine (HAWT)-CFD simulation

3-blade horizontal axis wind turbine (HAWT) CFD simulation by ANSYS Fluent software Wind turbines generally convert wind energy into electrical…

Real Porous Media CFD Simulation By ANSYS Fluent Software
Real porous media CFD simulation by ANSYS Fluent software
Heat Transfer, Mechanical, Single-Phase, Non-Reacting Flows

Real porous media CFD simulation by ANSYS Fluent software

Real porous media CFD simulation by ANSYS Fluent software Study of fluid flow in porous media is one of the…

CFD Simulation Of A Real Unmanned Aerial Vehicle (UAV-Aircraft)
CFD simulation of a real Unmanned Aerial Vehicle (UAV-Aircraft)
Aerospace, Mechanical, Single-Phase, Non-Reacting Flows

CFD simulation of a real Unmanned Aerial Vehicle (UAV-Aircraft)

CFD simulation of a real Unmanned Aerial Vehicle (UAV-Aircraft) using ANSYS Fluent software Drones can be considered as small non-pilot…

Our Process

If you want to know what we will do with your project read our steps blow.

STEP 1

Please send the details of your project through the link below.

STEP 2

Our colleagues will call you as soon as possible; then after advising you on your project, we will specify the steps of the project in detail, the fee and the delivery time for each step.

STEP 3

After paying the deposit, we will start your project and the results of each step will be sent to you in the specified deadlines. Once you have investigated your results and confirmed it, the fee of that step should be paid.

STEP 4

All of the results and files related to simulations will be sent to you and you will receive the required training.

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Yes, it is right that we can do everything you want the only thing that you should do is to fill the form at the Free Consulting Page and send us your project’s details then our support team will be in touch with you as soon as possible and they will give you free consulting for your project.

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