Introduction to CELSIUS 3D Heat Transfer Solver

CELSIUS provides you with a powerful, easy-to-use three-position thermal design and analysis tool. It provides fast, accurate results, accurate boundary modeling and open area issues that are easy to analyze.

In many applications, including part forming, bonding and hardening, heat distribution during heating is an essential part. Without this knowledge, the process can only be carried out under a specific condition. The lack of this knowledge can lead to uneven product quality, delayed time to market, waste of raw materials and increased energy costs.

In addition to the analog part, it is also important that the part is heated in the design environment. For induction heating, the shape of the coil can play an important role in the heating process. In addition, the heating device can be driven at different frequencies, which also affects the quality and efficiency of the heating process. In order to deal with these problems, a combination of finite element or finite element methods is required. The real problem is to understand the whole process, find the right simulation method and get useful results.

The main function

Choice of solvers: To ensure your confidence in the solution and independent verification, both the boundary element method and the finite element method are included in the same package to meet your specific application needs. Not every solver is suitable for every application, there is no "universal solver".

Choice of optimization tools: Parameter analysis is for those users who need to use short-term learning curves to achieve fast and simple optimization. APIs and scripts give advanced users more privileges. Both tools are included in the same package.

Built-in material libraries: To make it easy for you to access the materials you need to use, you can customize and create your own libraries.

Integration with MATLAB: The user's MATLAB code can call API functions, build geometry, assign physical parameters, solve and get results.

Parallelization: Allows you to take advantage of the available RAM to increase the speed of your solution and post-processing when using a 64-bit computer.

The intuitive interface makes it easier to customize to the user's preferences (overall appearance, toolbar, solver, background, default, etc.).

analysis

Boundary conditions such as temperature, heat flux density, temperature gradient, convection, and radiant heat exchange are easily assigned.

The heat source can be distributed in the form of volumetric heat and indicating heat.

Batch processing allows unattended resolution of multiple models

Solver and meshing

CELSIUS includes the most suitable solver for various programs.

Both BEM and FEM solution methods are included in the same package to meet your specific application needs.

The auto-solver automatically selects FEM or BEM based on a model of a general nature, but can also be manually selected.

Adaptive meshing and user selection.

User-specified weighting factor: tells the solver what area you are interested in, which produces better local results.

Periodicity and symmetry functions minimize modeling and solution time.

optimize

The same software CELSIUS includes various optimization tools so that you can find a specific design that best suits you: parametric analysis, scripts and APIs. Parametric analysis is best for users who use short-term learning curves to achieve fast and simple optimization. APIs and scripts give advanced users more privileges.

The parameterization function allows the definition of variable parameters to facilitate design optimization by stepping through multiple "if" situations.

Script: Almost unlimited ability to explore design changes.

API

Create your own application and write specialized tools for specific tasks. When using the ELECTRO program in the background, users can program and fully control their custom electromagnetic applications.

CELSIUS's API allows a variety of programs to work together, such as MATLAB, Excel, and Microsoft Visual Studio working with our software in an interrelated environment. Other software tools can be used in the same way as the API.

Add a utility: Choose our unique custom mini-program to enhance your design capabilities.

Users with programming and/or scripting skills will find this to be a very powerful tool.

material list

Multiple material tables provide multiple integrated libraries. Customize and create your own libraries for easy access to the materials you use.

Analysis result

Audiovisual (AVI) files allow results to be displayed in animations.

The display form of various rendering results, including the number of scalar and vector fields, such as graphics, outlines, arrows, streamlines, scatter, and vector trajectories.

High quality graphics and text tools for writing reports and presentations

The data is exported to a spreadsheet and other package-integrated formatted files.

Extensive design evaluation and optimized post-processing options.

The efficient use of parallel processing in post-processing operations.

Various display forms, including outline or arrow diagrams, color bands, surface representations, polarities, rectangular figures and 3D patterns.

Geometry – CAD function

Inventor-SolidWorks Solutions Partner

. SolidEdge – a partner for Siemens solutions

Autodesk Authorized Developer

. Partner Advantages of PTC Solver

. Microsoft partners

Intel Software Partner

. Tecplot partners

Industry standard CAD import/export utility provides time-saving convenience for model design and creation

. CAD repair tool that automatically corrects drawing errors

*.STEP, *.SAT, *.3DM, *.IGES and *.DXF file import options.

. Geometry tools for fixing common 3D CAD problems

. Ability to give geometric entity names

application

Electronic assembly

heat sink

cooling system

electric

Aerospace parts

car parts

system requirement

64-bit operating system

Microsoft Windows Vista, Windows 7, Windows 8 or higher

Software installation requires approximately 110MB of disk space

3D program

At least 4GB of memory, if dealing with larger problems, will take up more than 12GB of memory; the more memory, the faster the processing.

Since 3D programs are multi-threaded, it is recommended to use a multi-core processor computer.

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