Solutions

Pressure Drop Analysis in Energy Storage Container

Pressure Drop Analysis in Energy Storage Container

Industry: Renewable Energy (Energy Storage) Challenge: Ensure the optimal cooling performance of an energy storage container by analyzing the pressure drop associated with varying gap widths between the battery modules. This analysis is crucial for determining the impact of aisle width on the cooling system’s effectiveness and reducing design uncertainties. Solution: Computational fluid dynamics (CFD) […]

Aerodynamics, Renewable Energy, Thermal Management
Optimizing Airflow and Thermal Performance of a Mortar Machine Using CFD

Optimizing Airflow and Thermal Performance of a Mortar Machine Using CFD

Industry: Construction Equipment Challenge: A mortar machine’s cooling system was struggling to meet cooling requirements, leading to potential overheating issues. The existing fan design and airflow path were identified as contributing factors to the problem. Solution: Computational fluid dynamics (CFD) simulations were employed to analyze the airflow patterns and thermal performance of the mortar machine.

Construction Equipment, Powerpack/Powertrain, Thermal Management
Temperaturverteilung entlang der Stromlinien

Thermal Analysis of Energy Storage Container

Industry: Renewable Energy (Energy Storage) Challenge: Ensure the safe and efficient operation of a new airtight energy storage container concept, under extreme temperature conditions. The container relies solely on air conditioning units for temperature control and houses critical energy storage components that require a specific temperature range for optimal performance and longevity. Solution: A thermal

Renewable Energy, Thermal Management
Structural Analysis of Welds in Cooling Units

Structural Analysis of Welds in Cooling Units

Industry: Manufacturing (Machinery, Industrial Equipment) Challenge: Cooling units are critical components in many industrial systems, responsible for dissipating heat and ensuring optimal system operation. The structural integrity of these units, particularly the welds joining various components, is crucial for safe and reliable performance. Traditional methods of structural analysis, such as manual calculations and physical testing,

Powerpack/Powertrain
Full-scale fluid flow CFD simulation of a driver's cabine

Optimizing Thermal Comfort in a Driver’s Cabine

Industry: Rail Transportation Challenge: Maintaining a comfortable working environment for train drivers across diverse weather conditions while adhering to the stringent thermal comfort regulations outlined in EN 14813-1. This standard ensures optimal driver well-being and alertness for safe train operation. Solution: Our team of engineers employed advanced computational fluid dynamics (CFD) simulations to meticulously analyze

HVAC, Rail Transportation
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