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    • Air Quality Assessment
    • Environmental Impact Assessment (EIA)
    • Transport Planning and Travel Planning
    • Overheating Assessment
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      • Indoor Air Quality Assessment
      • Air Quality Monitoring
      • Odour Assessment
      • Air Quality Assessment
      • Bioaerosol Assessment
      • Dispersion Modelling
      • Environmental Permit Applications
    • M&E Engineering Design
      • Mechanical Design Consultancy
      • Electrical Design Consultancy
      • Architectural Acoustics
      • M&E Clerk of Works
    • Security Design & Consultancy
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      • BREEAM Assessment
      • CIBSE TM65 Assessment & Consultancy
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      • SKA Assessment
      • LEED assessment
      • Well Building Assessment
      • Circular Economy
      • Passivhaus Design Consultancy
      • Whole Life Cycle Carbon Assessment
    • Building Simulation Modelling
      • Daylight and Sunlight Assessment
      • Glint and Glare Assessment
      • Lux Plan
      • CFD & Thermal Modelling
      • Building Information Modelling in UK
      • Micro-Climate Analysis
      • Hygrothermal Assessment
      • Lighting Impact Assessment
      • Overheating Assessment
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      • Energy Monitoring
      • Commercial Energy Audit (MEES compliant)
      • Net Zero Carbon Consultancy
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      • Indoor Air Quality(IAQ) Plan And Testing
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      • SUDs Design and Drainage Strategy
      • Flood Risk Assessment
      • Below Ground Drainage Design
      • Transport and Highway Engineering Design
      • Foul Water and Utilities Assessment
    • Building Control Testing
      • Acoustic Sound Insulation Testing
      • Air Tightness Testing
      • Thermal Imaging Survey
    • Acoustic Consultancy Services in UK
      • Acoustic Plant & Noise Impact Assessment
      • Architectural Acoustics
      • Acoustic Sound Insulation Testing
      • Construction Noise and Vibration
      • Noise and Vibration at Work Assessment
    • Ecology & Arboricultural
      • Preliminary Ecological Appraisal (PEA)
      • Ecological BREEAM Survey
      • Protected Species Survey
      • Arboricultural Services
      • Landscape Services
      • Biodiversity Net Gain (BNG)
      • Ecology Clerk of Works
      • Urban Greening Factor (UGF)
  • Certification
    • SAP & SBEM Part L Calculation
    • Energy Performance Certificate (EPC)
    • Display Energy Certificate (DEC)
    • TM44 Air Conditioning Inspection (ACI)
    • Water Part G Compliance Report
    • Legionella & Water Hygiene Risk Assessment
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Heat Loss Calcs

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Home » Heat Loss Calcs

Heat loss calcs are used to work out the quantity of energy required to heat a building and the amount to invest in efficient heating technology (when the external conditions are colder).  The size of the heating installation depends largely on the performance of the building fabric.

To calculate the size of the heater(s) required to heat a building, we need to know:

– The temperature to be maintained withing the structure.

– The lowest ambient (outside temperature) which can be expected for the area.

– The direct heat loss from the overall surface area of the structure.

– Heat loss through natural or mechanical ventilation.

The difference between the ambient and internal temperatures gives the temperature lift required.

Temperature lift = Internal temp. – Ambient temp.

The heat loss for a structure is calculated by taking each surface in turn, calculating its overall area and multiplying by its thermal transmittance co-efficient or U value.

Heat loss through surface = width (m) x length (m) x U value

The area of windows and doors should be calculated and deducted from the area of the surface they are in and their heat loss should be calculated separately.  The total surface heat loss for the structure is the sum of all surface heat losses.

These types of calculations are useful at the design stage of a development to check if the envelope of the building is adapted to the local conditions.  In effect, if the thermal behavior of the construction is insufficient, then a bigger, more expensive heating system with a greater energy consumption will be required, leading to higher bills and more CO2 emissions.

 

 

 

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