Impact of Building Design and Operating Strategies on Urban Heat Island Effects Part II: Sensitivity Analysis

Author:

Ameer Baqer12,Krarti Moncef3

Affiliation:

1. University of Colorado Boulder Department of Civil, Environmental, and Architectural Engineering, Building Systems Program, , Boulder, CO 80309 ;

2. Kuwait Institute for Scientific Research , Safat 13109 , Kuwait

3. University of Colorado Boulder Department of Civil, Environmental, and Architectural Engineering, Building Systems Program, , Boulder, CO 80309

Abstract

Abstract This study investigates the mutual thermal interactions between buildings and the microclimate within urban area centers. Buildings are the primary energy consumers in cities, and one of the main causes of the urban heat island (UHI) formation. In this article, a flexible simulation environment is developed and used to model the mutual thermal interactions between building energy systems and their urban surroundings in Phoenix, AZ, characterized by its hot climate. The impacts of various operating strategies for both commercial and residential buildings are assessed on both UHI effects and energy consumption. Specifically, the study evaluates the impacts of indoor temperature settings, precooling strategies, and air infiltration/exfiltration rates. It has been found that heat rejected by air conditioning systems significantly impacts UHI formation in urban centers located in hot climates. Specifically, commercial buildings were found to cause more UHI effects than residential buildings due to higher cooling loads. The impacts of heat rejected from heating, ventilating, and air conditioning (HVAC) systems are found to be more dominant than that from air exfiltration on the microclimate of urban centers. For urban center made up of commercial buildings with a street aspect ratio of 2, heat from air exfiltration is estimated to be as low as 10% of the heat rejected by HVAC systems.

Publisher

ASME International

Reference57 articles.

1. MEGAPOLI: Concept of Multi-Scale Modelling of Megacity Impact on Air Quality and Climate;Baklanov;Adv. Sci. Res.,2010

2. UN-HABITAT , 2012, “State of the World’s Cites 2012/2013: United Nations Human Settlements Programme,” United Nations Human Settlements Programme, Nairobi, Kenya, p. 152.

3. Impacts of Urbanization on Urban Structures and Energy Demand: What Can We Learn for Urban Energy Planning and Urbanization Management?;Madlener;Sustain. Cities Soc.,2011

4. Remote Sensing of the Urban Heat Island Effect Across Biomes in the Continental USA;Imhoff;Remote Sens. Environ.,2010

5. Approaches to Study Urban Heat Island—Abilities and Limitations;Mirzaei;Build. Environ.,2010

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