High Equipment Heat Load
Generators, transformers, and batteries generate massive heat; poor cooling affects safety and efficiency.
Generators, transformers, and batteries generate massive heat; poor cooling affects safety and efficiency.
Moisture causes short circuits and corrosion, with critical impact on battery systems.
Dust clogs equipment, reduces heat exchange efficiency, and threatens electrical stability.
HVAC runs 24/7, and without efficient management, leads to significant waste.
The power sector requires uninterrupted operation while meeting energy efficiency and environmental standards.
Manage high sensible and latent heat loads from generators, transformers, and switchgear with robust cooling capacity and redundancy.
Operate reliably under high ambient temperatures, humidity, dust, or corrosive atmospheres; comply with fire, explosion, and electrical safety standards.
24/7 uptime with redundant systems, backup cooling, and emergency power support to ensure mission-critical reliability.
High-efficiency chillers, waste-heat recovery, variable speed drives, and renewable energy integration to cut operating costs.
Real-time monitoring of temperature, humidity, and airflow; predictive maintenance for early fault detection; remote alarms and control.
Compliance with industrial HVAC codes, refrigerant regulations, environmental standards, and noise/heat discharge limits.
Extensive experience in Energy & Power HVAC projects across Asia-Pacific, with deep understanding of codes, climate conditions, and mission-critical requirements.
From consulting, design, and validation to commissioning and after-sales maintenance, Aurashu delivers seamless full-cycle solutions.
Industrial-grade HVAC designed to perform under extreme environments, fully compliant with fire, explosion, and electrical safety standards.
Energy recovery, renewable integration, and advanced controls combined with real-time monitoring and predictive maintenance to reduce costs and maximize uptime.
Industrial-grade chillers, precision control loops, and redundant units designed to handle heavy thermal loads in mission-critical facilities.
Recover waste heat from generators and transformers, with integration into boilers or energy-reuse systems for higher efficiency.
Corrosion-resistant, dust-proof, and explosion-proof construction, ensuring reliable operation under high temperature and humidity.
N+1 or 2N system designs, dual cooling paths, and emergency backup power to guarantee uninterrupted operation.
IoT-enabled sensors, predictive maintenance, and renewable integration (solar-assisted HVAC, VFDs, energy recovery) to reduce downtime and lifecycle costs.