Energy saving potentials of demand-controlled ventilation based on the real-time traffic load in underground parking facilities

Citations

SCOPUS

3

초록

The main topic of this paper is to show a possibility of indoor air quality enhancement and the fan energy savings in underground parking facilities by applying the demand-controlled ventilation (DCV) strategy based on the real-time variation of the traffic load. The established ventilation rate is estimated by considering the passing distance, CO emission rate, idling time of a vehicle, and the floor area of the parking facility. However, they are hard to be integrated into the real-time DCV control. As a solution to this problem, the minimum ventilation rate per a single vehicle is derived in this research based on the actual ventilation data acquired from several existing underground parking facilities. And then its applicability to the DCV based on the real-time variation of the traffic load is verified by simulating the real-time carbon monoxide concentration variation. The energy saving potentials of the proposed DCV strategy is also checked by comparing it with those for the current underground parking facility ventilation systems found in the open literature.

키워드

demand controlled ventilationenergy conservationunderground parking facilitiesvehicle detection systemCarbon monoxide concentrationDemand-controlled ventilationEnergy saving potentialIndoor air qualityReal time trafficsUnderground parkingVehicle detection systemsVentilation systemsCarbon monoxideEnergy conservationIndoor air pollutionParkingVaractorsVentilation
제목
Energy saving potentials of demand-controlled ventilation based on the real-time traffic load in underground parking facilities
저자
Cho, Hong-JaeJeong, Jae Weon
DOI
10.1061/9780784412909.051
발행일
2013-04
유형
Conference Paper
저널명
AEI 2013: Building Solutions for Architectural Engineering - Proceedings of the 2013 Architectural Engineering National Conference
페이지
524 ~ 533