Energy performance of buildings. Ventilation for buildings - Interpretation of the requirements in EN 16798-9. Calculation methods for energy requirements of cooling systems (Module M4-1,M4-4, M4-9). General

Energy performance of buildings. Ventilation for buildings - Interpretation of the requirements in EN 16798-9. Calculation methods for energy requirements of cooling systems (Module M4-1,M4-4, M4-9). General

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What is this PD CEN/TR 16798‑10 about?  

PD CEN/TR 16798‑10 is the tenth part of multiple series that contains information to support the correct understanding, use and national adaptation of PD CEN/TR 16798‑10 . 

Note: The accompanied EPB standard, EN 16798-9, covers two different methods for the calculation of the energy performance of cooling systems: a simplified and a detailed method. 

Who is this PD CEN/TR 16798‑10 for? 

PD CEN/TR 16798‑10 on energy performance of buildings useful for: 

  • Construction industry 
  • Civil engineer 
  • Agencies or Installer of EPB standards 
  • Manufacturers of Ventilation for buildings  

Why should you use this PD CEN/TR 16798‑10 

PD CEN/TR 16798-10 provides a set of EPB standards, Technical Reports and supporting tools to users for facilitating the necessary overall consistency and coherence, in terminology, approach, input/output relations and formats, for the whole set of EPB-standards  

PD CEN/TR 16798-10 enables you to understand laws and regulations directly refer to the EPB-standards and make compliance with them compulsory. This requires that the set of EPB-standards consists of a systematic, clear, comprehensive and unambiguous set of energy performance procedures  

PD CEN/TR 16798-10 intended cooling systems simplified method to help the user for examining the requirement of minimum input date and treats certain areas (like the emission and distribution heat losses and auxiliary energy) using overall factors. The detailed method refers help to the outputs provided by the respective standards for the calculation of the losses and the auxiliary energy at all stages and therefore needs considerably more input data