Energy Engineering for Efficient & Resilient Buildings
We develop practical energy solutions that improve efficiency, support renewable energy integration and provide the technical basis for informed investment decisions.
What We Do
Energy Engineering Across the Project
We develop energy solutions around the technical, operational and financial requirements of each project, from early feasibility and assessment through design, integration and implementation.
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Assessment of energy use, demand, consumption patterns and opportunities for improved efficiency and performance.
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Identification and development of practical measures to reduce energy consumption, improve system performance and optimise operating costs.
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Feasibility, electrical design and integration of photovoltaic systems for residential, commercial, industrial and larger-scale applications.
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Technical assessment and integration of battery energy storage systems to support energy management, resilience, renewable energy integration and operational requirements.
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Assessment of how renewable generation and storage interact with the electrical network, building loads and available supply capacity.
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Assessment and design of EV charging infrastructure, including electrical capacity, load management and integration with the wider energy strategy.
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Energy monitoring, metering and management solutions that provide information required to understand and optimise building energy performance.
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Technical and preliminary feasibility assessments to determine whether proposed energy solutions are technically and practically viable.
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Integration of renewable energy systems with building electrical infrastructure, considering generation, demand, storage and future requirements.
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Development of coordinated energy strategies combining efficiency measures, renewable generation, storage, EV infrastructure and electrical systems where appropriate.
Energy Engineering Considerations
Energy Decisions That Matter
Energy systems should be considered as part of the wider building and electrical strategy. We assess the technical, operational and financial factors that influence performance, reliability and long-term value.
Energy Demand & Consumption
We assess current or anticipated energy demand and consumption patterns to establish an appropriate basis for system design.
Generation & Demand Matching
We consider how renewable generation aligns with the building's demand to maximise useful energy production and reduce unnecessary export or curtailment.
Electrical Supply Capacity
We assess available electrical capacity and network constraints when integrating PV, EV charging, storage and other high-demand systems.
Energy Storage
We consider storage capacity, operating strategy, charging and discharging requirements and how battery systems interact with generation and demand.
Load Management
We assess opportunities to manage electrical loads and avoid unnecessary peaks, particularly where EV charging, heat pumps, PV or battery systems are involved.
System Efficiency
We consider system efficiency, operating conditions, losses and control strategies when evaluating energy solutions.
Technical & Financial Feasibility
We consider technical feasibility, capital requirements, operating costs and expected benefits to support informed project decisions.
Future Capacity
We consider future energy demand, additional generation, EV adoption, storage expansion and other changes that may affect the system.
Grid Interaction
We consider the relationship between on-site generation, storage, building demand and the electrical network.
Integration & Coordination
We coordinate energy systems with the building's electrical infrastructure, architectural requirements and other engineering systems.
WHAT WE DELIVER
Our deliverables provide the technical and commercial information required to evaluate, design, coordinate and implement energy systems throughout the project lifecycle.
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Assessment of energy consumption, demand profiles, system performance and opportunities for improvement.
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Technical and preliminary feasibility assessments for proposed energy systems and projects.
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Energy demand, generation, storage, system performance and other calculations supporting design decisions.
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PV system layouts, electrical design, system sizing, generation assessment and integration with the building electrical infrastructure.
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Technical design and integration information for battery energy storage systems, including capacity, configuration and electrical interfaces.
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EV charging layouts, load assessment, electrical infrastructure requirements and load-management considerations.
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Technical specifications for PV, storage, EV charging, monitoring, control and associated energy systems.
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Preliminary cost estimates, quantities and technical information supporting budgeting, investment decisions and tender evaluation.
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Drawings, specifications, schedules and technical information required for tendering and procurement.
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Coordination with electrical, architectural and other engineering disciplines, technical review and support during implementation.
Planning a New Project?
Bring us into the design early.
We can help define the electrical requirements, coordinate the design and develop practical solutions before decisions become difficult or expensive to change.