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Triarch Civil Design & Engineering Services brings together engineering excellence, infrastructure insight, and advanced technology to shape resilient, high-performance projects across sectors.

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Energy Modelling Services | Building Performance & Sustainability Optimization

Energy Modelling

Energy modelling is fundamental to designing buildings that are efficient, sustainable, and economically viable. At Triarch Civil Design & Engineering Services, we deliver advanced energy modelling solutions tailored to enhance building performance, minimize operational costs, and support green certification objectives.

Leveraging industry-leading simulation software and rigorous data-driven analysis, make sure to evaluate how a building performs under varying operational conditions. We analyse key parameters including lighting, HVAC systems, building envelope performance, occupancy patterns, and environmental influences. The result is a comprehensive energy profile that identifies opportunities for optimization, efficiency improvements, and long-term sustainability.

What Our Energy Modelling Services Include


  • Building Energy Simulations: Detailed analysis of how the building uses energy across HVAC, lighting, and equipment loads.
  • HVAC System Optimization: Evaluation and modelling of heating, cooling, ventilation, and control strategies for efficiency.
  • Building Envelope Performance: Assessment of insulation, glazing, shading, and material choices to reduce heat gain/loss.
  • Lighting & Daylight Modelling: Simulation of artificial and natural lighting to enhance comfort and lower energy demands.
  • Energy Consumption Forecasting: Predicting overall energy use based on occupancy patterns, climate data, and building systems.
  • Sustainability & Green Certification Support: Energy modelling reports tailored for LEED, IGBC, GRIHA, and other certifications.
  • Cost & Energy Savings Analysis: Identifying opportunities for energy reduction, operational savings, and ROI improvement.
  • Scenario-Based Comparison: Comparing multiple design options to select the most efficient and cost-effective solution.