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CFD Analysis
Harness the power of Computational Fluid Dynamics (CFD) to optimise HVAC systems—analysing temperature, airflow, and environmental impacts for peak efficiency and reliability.
WHAT IS CFD?

Computational Fluid Dynamics (CFD) is a powerful simulation tool that allows us to analyse temperature distribution, airflow, and surrounding effects on HVAC systems. Using CFD tools, we can analyse how condensers operate under different real-world conditions, ensuring optimal system design, efficiency and reliability.

Benefits of MHIAA CFD Analysis

Extreme Climate Testing

Simulates HVAC system performance under extreme conditions such as high temperatures, zero wind flow, and varying humidity levels.

Optimised Heat Dissipation

Analyses heat distribution and airflow patterns to maximise heat dissipation and improve overall system efficiency.

Reduce Operation Costs

Identifies inefficiencies early to reduce downtime, extend equipment life, and minimise ongoing maintenance and operational expenses.

Improved System Design

Enhances system design by assessing condenser placement, incorporating deflectors, and optimising environments—such as replacing solid barriers with louvred walls for improved airflow.
HOW IS CFD CONDUCTED?

MHIAA conducts CFD simulation based on client-provided layouts and designs, ensuring a tailored analysis of real-world conditions. By considering the location, specific factors such as building structures, airflow obstruction and environmental conditions, MHIAA accurately evaluates system performance in extreme Australian Climates. Using cutting-edge CFD capabilities, operation of outdoor air-conditioning units can be simulated under diverse Australian conditions, including extreme ambient temperature, no natural wind or strong winds, high humidity etc. MHIAA aims to address challenges such as air recirculation, heat distribution beyond condensers operating range, and any obstruction that accurately simulate real-world performance.

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