Comparison of Downdraught and Up Draft Passive Air Conduction Systems (PACS) in a Winery Building

Author:

Katona Ádám LászlóORCID,Háber István ErvinORCID,Kistelegdi István

Abstract

A huge portion of energy consumption in buildings comes from heating, ventilation, and air conditioning. Numerous previous works assessed the potential of natural ventilation compared to mechanical ventilation and proved their justification on the field. Nevertheless, it is a major difficulty to collect enough information from the literature to make decisions between different natural ventilation solutions with a given situation and boundary conditions. The current study tests the passive air conduction system (PACS) variations in the design phase of a medium-sized new winery’s cellar and production hall in Villány, Hungary. A computational fluid dynamics simulation based comparative analysis enabled to determine the differences in updraft (UD) and downdraught (DD) PACS, whereby the latter was found to be more efficient. While the DD PACS performed an air change range of 1.02 h−1 to 5.98 h−1, the UD PACS delivered −0.25 h−1 to 12.82 h−1 air change rate. The ventilation performance of the DD version possessed lower amplitudes, but the distribution was more balanced under different wind incident angles, thus this version was chosen for construction. It could be concluded that the DD PACS provides a more general applicability for natural ventilation in moderate climates and in small to medium scale industry hall domains with one in- and one outlet.

Publisher

MDPI AG

Subject

Building and Construction,Civil and Structural Engineering,Architecture

Reference57 articles.

1. United Nations Framwork Convention on Climate Change: Report of the Conference of the Parties on its Twenty-First Session, held in Paris from 30 November to 13 December 2015http://unfcc.int/resource/docs/cop21/eng/10.pdf

2. A Roadmap for Moving to a Competitive Low Carbon Economy in 2050http://eur-lex.europa.eu/LexUriServ/LexUriServ.do?uri=COM:2011:0112:FIN:EN:PDF

3. World Carbon Dioxide Emissions: 1950–2050

4. GHG emission scenarios in Asia and the world: The key technologies for significant reduction

5. A review on buildings energy consumption information

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