The Design – Ethylene Glycol + Water Liquid Through Star Shaped Radiator | Ansys CFX
This simulation is about an Analysis of Ethylene Glycol + Water Liquid Through Star Shaped Radiator using ANSYS CFX software. We perform this CFD project and investigate it by CFD analysis.
A star-shaped radiator concept can refer to decorative home radiators made of star-shaped modules or illuminated, star-like patterns on vehicle grilles and lighting. The home heating concept uses modular elements to create a striking visual composition, while the automotive concept blends heritage with modern design through illuminated elements.

Picture 1. A star-shaped radiator concept
In home and interior design
- Modular design: Star-shaped elements are used to form a unique and captivating radiator.
- Aesthetic: This concept creates a striking visual composition that stands out from traditional radiator designs.
- Example: The KERMI Ideos concept is an example of a radiator with star-shaped elements, as described on Curated Innovations.
In automotive design
- Illuminated grille:
Some modern car concepts feature an illuminated radiator grille with a striking star-shaped light design. - Symbolic: This design is a modern interpretation of classic automotive grilles, often including a luminous Mercedes-Benz star on the hood.
- Function: While a traditional radiator is not present in an electric car, the grille serves as a visual element that merges heritage with modern technology.
- Example: The Mercedes-Benz Vision Iconic concept showcases this design, linking the past with a forward-looking aesthetic.
In this analysis, it has been made to simulate and analyze Ethylene Glycol + Water Liquid Through Star Shaped Radiator using ANSYS CFX software.
Geometry & Grid
The geometry required for this analysis was generated by Ansys Design Modeler software. The meshing required for this analysis was also generated by Ansys Meshing software. The mesh type used in this analysis is unstructured. The total number of volume properties for geometry is 2,1251e+005 mm³.
Model
In this analysis, a steady-state analysis type was used to obtain the results to check the fluid flow. In this analysis, non-buoyant models have been used and stationary domain motion has also been activated in this analysis.
Boundary Condition
The flow input for this geometry of a Star Shaped Radiator directs the flow of air at a fluid temperature of 20°C into the geometry. The coolant material is considered Ethylene Glycol + Water Liquid through a Star-Shaped Radiator. The turbulence boundary condition of a Star Shaped Radiator wall is considered to be none (laminar) according to the working conditions. The wall function is defined as automatic in the name selection section of the turbulence boundary condition. The normal speed for the mass momentum is equal to 3.57 m/s. The water mass fraction for the component details is set with equal to 0.5.
Discretization of Equations
In this analysis, high resolution is used for the advection scheme of the basic settings. In this analysis, the first-order is used for turbulence numerics. In this analysis, the residual type of convergence criteria is RMS and the residual target of convergence criteria is 0,00001 with conservation target is equal 0,0001.
The results are presented as pressure contours as well as volume rendering.
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