Download Cradle CFD 2024.1 win64 full license forever
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System: 64bit
Interface language: English
System Requirements: Win 10/11 64-bit
Description of Cradle CFD 2024.1
Cradle CFD includes modules:
ScFLOW
scSREAM & Heat Designer
SC/Tetra
scPOST
CADthru
ScFLOW
scFLOW – application for mathematical modeling of hydraulic gas and heat exchange tasks with adaptive grid and high computational speed
Features and functions characteristic of scFLOW
Simplification of preprocessor operations
The required data operations from the CAD system for grid analysis have been greatly simplified compared to previous versions. Saving information about the assembly and setting the details parameters create the impression of continuity in the work between systems and reduce the load on the user.
Adaptive grid
The function of local embetering / crushing elements is improved when automatically creating a grid. The adaptive grid is generated from elements with the most suitable size for a particular geometry.
Viewing mode
Data from the preprocessor may be displayed in the view mode when the license is occupied by the post-processor or grid generation.
Conducting an Interaction Journal through VB Interface
Transactions from the preprocessor can be saved as a log file using the Visual Basic interface. This does not allow the creation of user scripts, but allows you to create an automated system in a short period based on operations stored in the log.
Accelerated stationary analysis
The optimization of the calculation algorithm used has increased the performance of the compatibility function and reduced the calculated cycle time for stationary calculations.
Calculation Stabilization
For a grid of low-quality components, the calculations can be automatically stabilized to prevent disc that disc.
Development of scripts
Previously complex settings (properties of the material or boundary conditions, time-dependent or coordinates) required the creation of code in C and subsequent compilation. When using scripts, a compilation is not required, and the functions themselves can be written in the preprocessor in the JavaScript language.
Movement elements (discrete grid)
Computing for moving objects: rotation of the fan, moving cars close to each other. The accuracy of calculating the connections of elements is increased by revising the algorithm. For a parallel solvender, the efficiency of memory use is improved, which should bring a significant effect with multi-core calculations when working with large tasks.
Free surface
The software calculates the shape of the contact surface between the gaseous and liquid substance. This function can be used in conjunction with such functions as border movement, overlap of the grids, tracking of elementary particles. In case of stabilization of the phase surface, it is possible to conduct a stationary analysis, which gives a result in a shorter time.
scSREAM & Heat Designer
scSTREAM – application for mathematical modeling of hydrogas dynamics and heat exchange problems with a structured grid
The calculation models in scSREAM are based on a simple and convenient structured grid in the construction. The grid of this type consists of many small cuboids, so it approximates the currivolene surfaces only into the step-paced structure.
This version of the grid is used in cases where currivolin surfaces or small parts do not have a significant effect on the overall result. Examples of the use of structured grid are found in the modeling of electronics, heating, ventilation and air conditioning, as well as in the design of architectural structures.
Features, functions and tasks characteristic of scSTREAM:
Different methods of geometry representation
The form of the model to be analysed may be represented using the following methods:
– the method of the oxel (inclinic and curvilinear surfaces are represented in cuoids);
– method of beveled cells (clarification of the model created using the CAD system);
– the method of finite elements (a model of an arbitrary mold with an unstructured grid can be applied to a model with a structured grid, which allows you to use the model of CAD system in its original form).
Modeling of object movement
The scSTREAM system allows you to calculate the flow created by an absolutely rigid moving object. As conditions, such parameters as the movement of the object (movement, rotation, elastic deformation), generation / absorption of heat, supply/removal of air can be established. For the model of a moving object, another grid is created. With this approach, conditions such as the object’s distance are practically unlimited, and this allows you to create models of arbitrary complexity.
Scaling of boundary conditions
If the target phenomenon studied has an order of magnitude smaller than the size of the environment that influences it, the results of the environmental analysis can be used as boundary conditions in order to reduce the time and number of calculations.
Free surface
The software calculates the shape of the contact surface between the gaseous and liquid substance. This feature is useful in a wide range of areas: from the tsunami analysis in civil engineering and construction to the analysis of roates in the field of electronics.
Calculation of high complexity models
With a structured grid, the complex model practically does not need to be adjusted, since the shape and size of the elements of the model do not affect the complexity of grid generation. In addition, with parallel calculations, the calculation is performed at high speed. This ensures the efficiency of data processing.
Local crushing of the net
The grid shall be cruculated locally to represent the model form and effectively perform the calculation.
Creating User Variables and Scripts
The task of complex conditions containing trigonometric functions or branches with an operator IF can be performed without compiling.
Library of Electronic Components
The geometry and properties of frequently used parts can be stored in the library for reuse in the future, which saves time when creating an estimated model.
Image trajectory (HeatPathView)
The information information obtained from the post-processing stage of the CFD analysis of the temperature of each part and a full amount of allocated heat is not enough to understand the thermal trajectory. HeatPathView displays the thermal trajectory and the amount of heat transferred throughout the computing domain using diagrams, graphs and tables, allowing you to easily find bottled places.
Import of data from CPR electronic devices
This function allows you to read and import data on the wiring scheme of the printed circuit from the CAD system. This allows you to obtain a more realistic modeling result, taking into account heat transfer caused by an uneven wiring scheme.
The HeatDesigner module (inbounds in the scSREAM distribution) is designed to perform thermal calculations of electronic components
HeatDesigner is a specialized solution based on scSTREAM, which is designed for thermal calculation of electronics. The performance of HeatDesigner is optimized for cases that do not require accurate reproduction of curvilinear geometry to predict the flow field. However, HeatDesigner supports a grid consisting of more than a hundred million elements, which allows you to accurately describe the small elements of geometry. As with scSTREAM, the main advantages of HeatDesigner are the short calculation time and low consumption of computing resources.
Features, functions and tasks characteristic of HeatDesigner:
Calculation of high complexity models
With a structured grid, the complex model practically does not need to be adjusted, since the shape and size of the elements of the model do not affect the complexity of grid generation. In addition, with parallel calculations, the calculation is performed at high speed. This ensures the efficiency of data processing.
Local crushing of the net
The grid shall be cruculated locally to represent the model form and effectively perform the calculation.
Creating User Variables and Scripts
The task of complex conditions containing trigonometric functions or branches with an operator IF can be performed without compiling.
Library of Electronic Components
The geometry and properties of frequently used parts can be stored in the library for reuse in the future, which saves time when creating an estimated model.
Image trajectory (HeatPathView)
The information information obtained from the post-processing stage of the CFD analysis of the temperature of each part and a full amount of allocated heat is not enough to understand the thermal trajectory. HeatPathView displays the thermal trajectory and the amount of heat transferred throughout the computing domain using diagrams, graphs and tables, allowing you to easily find bottled places.
Import of data from CPR electronic devices
This function allows you to read and import data on the wiring scheme of the printed circuit from the CAD system. This allows you to obtain a more realistic modeling result, taking into account heat transfer caused by an uneven wiring scheme.
Examples of tasks solved:
Kiding, condensation education
Light analysis
Modeling of solar radiation
Air humidity analysis (sustody and evaporation processes)
Vegetation modeling (wet, cooling due to evaporation)
Modeling of wind loads
Assessment of the impact of electrostatic field
Modeling of filling with a singing shin
Solving / Melting Processing Modeling
Sodule Heat Modeling
Tracking of elementary particles (reactions, interaction)
SC/Tetra
scTETRA – application for mathematical modeling of hydraulic gas dynamics and heat exchange with unstacked grid
scTETRA uses a hybrid mesh that allows you to present the geometric features of the model with high accuracy. Fast mesh generator, high-speed computing, low memory consumption and a user-friendly interface allow you to work efficiently and get results in a short time.
The hybrid (or unstructured) grid is generated using tetrahedral, pentaedral, hexaedral and other polyederal elements. This grid is used in tasks where the exact representation of geometry is crucial. Examples of such tasks are modeling of vehicle aerodynamics, flow in pipelines, turbo machine tools.
Features, functions and tasks characteristic of scTETRA:
High-speed automatic grid generation
The high-quality grid is automatically created in the minimum time using the Exhaustion Method (Advancing Front). When creating a layer of pusmatic elements, its width can be set depending on the width of the flow channel. The software allows you to speed up the process of grid generation by using parallel computing and supports the creation of nets of significant sizes.
Adaptive grid
For stationary analysis when using this function, the size of the grid elements will automatically decrease in the area where there is a significant change in flow or pressure. After the solvent has completed the calculation, the preprocessor will start automatically and restructure the grid based on the calculation results. This function is suitable for analyzing the flows in the pipes of a complex shape.
Change of CAD-models
In scTETRA, you can edit the models obtained from the CAD system, if necessary or in case of errors. Boundary conditions can be set based on the names of parts and other parameters imported from the CAD system. If the imported model lacks any areas necessary for analysis, they can be represented in shapes such as a cuoid and cylinder.
Free surface
The software calculates the shape of the contact surface between the gaseous and liquid substance. This function can be used in conjunction with such functions as border movement, overlap of the grids, tracking of elementary particles. Examples of application – analysis of the influence of waves on the ship, the analysis of the influence of the strewip on the gas tank, etc.
Dynamic function
It makes it possible to analyze the forced movement and rotation of an absolutely rigid object under the influence of hydrodynamic force.
Discrete grid
This technology of working with the grid allows:
– model the flows generated by moving objects: rotation of fans and turbines, the movement of cars or trains;
– analyze the heating taking into account the shift between the rotor and the sleed in the disc braking system;
– analyze the combination of rotation and movement (e.g., piston pump).
Overlap of the nets
The movement, which is not reproduced by deformation or rotation, is simulated by a blocked grid for the movable and fixed area. In addition, the objects are in contact and the overlap of several areas. An example of the application of this function is the analysis of the opening and closing of the engine piste paving valve or a gear pump running through the gears.
Module for calculation for strength
Deformations and temperature voltages can be calculated based on calculated pressure and temperature values. An interface with Abaqus is implemented to solve the problems of interaction between liquid and design.
Modeling of compressed liquid
scTETRA makes it possible to analyze the phenomenon of supersonic flow and significant expansion/compression volume. For the compressible liquid, decisives are used both on the basis of pressure and on the basis of density. The type of solver depends on the purpose of the analysis and the type of phenomenon.
Examples of tasks solved:
Bodius modeling
Caviatration modeling
Vental modeling (modification, form analysis)
Aerodynamic noise analysis
Solvement/melting processes
Modeling of Dispersion Multiphase Flow
Tracking of elementary particles (reactions, interaction)
Calculation of the amount of condensate
Liquid film modeling (Advanced particle tracking function)
Pressure loss modeling
Modeling of thermoregulation
Turbulent Flow Modeling
Radiation modeling
Modeling of a fan without creating a geometric model
Sodule Heat Modeling
Slide Bearing Designer
scPOST
scPOST – post-processor for visualization of calculations performed both by solvers of Cradle-cfd programs and other solvers
Available import formats: MSC Nastran, MSC Marc, images (BMP, PNG), 3D ghemetry (STL, Parasolid)
Available export formats: Generic format for fluid data (.cgns), images (BMP, JPG, PNG), animation (AVI, WMV), 3D gimery (STL, VLM, FBX)
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