Heat Load Calculation with Duct Design of a Multi Storeyed Residential Building IJTSRD


The heating, ventilation, and air conditioning HVAC system is arguably the most complex system installed in a building and is responsible for a substantial component of the total building energy use. Maintaining optimal temperature and air circulation are the basis of a comfortable indoor environment 1 . This role is played by HVAC Heating, ventilation and air conditioning systems. The heat load calculations along with the duct design for a HVAC system installed in a multistorey residential building is calculated and analyzed to maintain a desired temperature based on outer environmental temperature. The duct design is analyzed which create an impact on system performance. The layout of a multistorey residential building is made by using Autodesk REVIT software. A complete air conditioning system was designed along with ducts and VAV system to control the indoor environment conditions like temperature, relative humidity, air movement, etc. Based on the obtained Heat Load Calculations CFM and T.R values were found for each spaces and ducting design was done for all the spaces by considering the quantity of CFM to be supplied. A suitable air handling unit AHU is selected based on the CFM value for multi storey residential building. With this the capacity of equipment was estimated and selected for the installation.

by Basavaraja K. T | T. Kiran | T. Sushanth | Thummala Saiteja Reddy “Heat Load Calculation with Duct Design of a Multi Storeyed Residential Building”

Published in International Journal of Trend in Scientific Research and Development (ijtsrd), ISSN: 2456-6470, Volume-3 | Issue-3 , April 2019,

URL: https://www.ijtsrd.com/papers/ijtsrd23301.pdf

Paper URL: https://www.ijtsrd.com/engineering/mechanical-engineering/23301/heat-load-calculation-with-duct-design-of-a-multi-storeyed-residential-building/basavaraja-k-t

call for paper Civil Engineering, international journal Agricultural Engineering, ugc approved journals for engineering




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