Urban forestry and cool roofs
Assessment of heat mitigation strategies in Phoenix residential neighborhoods
Bibliographic Data
| ID | 23364768 |
|---|---|
| Authors | Ariane Middel (0000-0002-1565-095X, Arizona State University, corresponding author), Nalini Chhetri (0000-0002-8407-6218, Arizona State University), Raymond Quay (Arizona State University) |
| Year | 2015 |
| Volume | 14 |
| Issue | 1 |
| Pages | 178-186 |
| Publication date | 2015-01-01 |
| Peer Reviewed | Yes |
| Open Access | Yes |
| Type | ARTICLE |
| Venue | Urban Forestry & Urban Greening (JOURNAL) |
| Journal identifiers | ISSN: 1618-8667 • E-ISSN: 1610-8167 |
| Publisher | Elsevier BV (PUBLISHER) |
| DOI | 10.1016/j.ufug.2014.09.010 |
| OpenAlex | W2020054819 |
| Language | EN |
| Citations received | 61 |
| References cited | 50 |
The City of Phoenix (Arizona, USA) developed a Tree and Shade Master Plan and a Cool Roofs initiative to ameliorate extreme heat during the summer months in their arid city. This study investigates the impact of the City's heat mitigation strategies on daytime microclimate for a pre-monsoon summer day under current climate conditions and two climate change scenarios. We assessed the cooling effect of trees and cool roofs in a Phoenix residential neighborhood using the microclimate model ENVI-met. First, using xeric landscaping as a base, we created eight tree planting scenarios (from 0% canopy cover to 30% canopy cover) for the neighborhood to characterize the relationship between canopy cover and daytime cooling benefit of trees. In a second set of simulations, we ran ENVI-met for nine combined tree planting and landscaping scenarios (mesic, oasis, and xeric) with regular roofs and cool roofs under current climate conditions and two climate change projections. For each of the 54 scenarios, we compared average neighborhood mid-afternoon air temperatures and assessed the benefits of each heat mitigation measure under current and projected climate conditions. Findings suggest that the relationship between percent canopy cover and air temperature reduction is linear, with 0.14 °C cooling per percent increase in tree cover for the neighborhood under investigation. An increase in tree canopy cover from the current 10% to a targeted 25% resulted in an average daytime cooling benefit of up to 2.0 °C in residential neighborhoods at the local scale. Cool roofs reduced neighborhood air temperatures by 0.3 °C when implemented on residential homes. The results from this city-specific mitigation project will inform messaging campaigns aimed at engaging the city decision makers, industry, and the public in the green building and urban forestry initiatives.
Agroforestry · Canopy · Climate change · Deserts and xeric shrublands · Geography · Landscaping · Meteorology · Metropolitan area · Microclimate · Phoenix · Thermal comfort · Tree canopy · Tree planting · Urban Forestry · Urban heat island · Building Energy and Comfort Optimization · Ecology · Environmental Science · Urban Green Space and Health · Urban Heat Island Mitigation
Where and Why Do Ecosystem-Based Adaption Projects Take Place in California
Impacto del diseño de modelos urbanos públicos y privados sobre la respuesta térmica del sector de piedemonte. El caso del Área Metropolitana de Mendoza, Argentina
Multidisciplinary Understanding of the Urban Heating Problem and Mitigation
Urban tree design approaches for mitigating daytime urban heat island effects in a high-density urban environment
A review on the CFD analysis of urban microclimate
Access to urban green space and environmental inequalities in Germany
Urban green space cooling effect in cities
Using green infrastructure for urban climate-proofing
Impact of tree locations and arrangements on outdoor microclimates and human thermal comfort in an urban residential environment
Optimizing green space locations to reduce daytime and nighttime urban heat island effects in Phoenix, Arizona
Cooling hot cities
Solar reflective pavements—A policy panacea to heat mitigation
Measuring Green Exposure Levels in Communities of Different Economic Levels at Different Completion Periods
The Premium of Public Perceived Greenery
The Impact of Greenspace on Thermal Comfort in a Residential Quarter of Beijing, China
Integrating three plan evaluation approaches for coordinated heat resilience in cities across the Arizona urban corridor
Drought perceptions, experiences, and adaptive governance in semi-arid Ghana
Combining land cover, animal behavior, and master plan regulations to assess landscape permeability for birds
Community-engaged heat resilience planning
The co-production of sustainable future scenarios
Optimizing the co-benefits of food desert and urban heat mitigation through community garden planning
Maximizing the pedestrian radiative cooling benefit per street tree
Legacies of redlining lead to unequal cooling effects of urban tree canopy
More than a canopy cover metric
Machine learning-based multi-objective optimization of smart irrigation of urban trees in Arizona
Impacts of form and design policies on urban microclimate
Assessing the potential of Tehran's green space master plan to enhance urban ecological performance, cooling capacity, and spatial equity
Urban microclimate and outdoor thermal comfort. A proper procedure to fit Envi-met simulation outputs to experimental data
Effects of urban morphology on thermal comfort at the micro-scale
Comparative and combinative cooling effects of different spatial arrangements of buildings and trees on microclimate
Simulating microclimate adaptation
Ontology-based knowledge representation of urban heat island mitigation strategies
Effectiveness of urban surface characteristics as mitigation strategies for the excessive summer heat in cities
Quantifying the cooling effect of urban green space
Impact of urban canyon geometries on outdoor thermal comfort in central business districts
Implementing blue-green infrastructures in cities – A methodological approach considering space constraints and microclimatic benefits
Relating microclimate, human thermal comfort and health during heat waves
A micro-climatic study on cooling effect of an urban park in a hot and humid climate
Quantitative assessment of green coverage changes under the human-biometeorological perspective
Urban grid forms as a strategy for reducing heat island effects in arid cities
Microclimate Vision
Implementation hypothesis of the Apulia Itaca Protocol at district level – part II
Green space-building integration for Urban Heat Island mitigation
Comparative assessment of heat mitigation strategies across hotspot local climate zones in a hot arid city
Mitigating the urban heat island in a residential area in Tehran
Assessing impact of urban densification on outdoor microclimate and thermal comfort using Envi-met simulations for Combined Spatial-Climatic Design (CSCD) approach
Exploring the correlation between waterbodies, green space morphology, and carbon dioxide concentration distributions in an urban waterfront green space
Assessing the Cooling Benefits of Tree Shade by an Outdoor Urban Physical Scale Model at Tempe, AZ
Why Does Planning Matter in Microclimate Management and Urban Heat Mitigation
Urban Heat Management in Louisville, Kentucky
Assessment of the sustainable potential of parking lots in Bahía Blanca City, Argentina
Outdoor Thermal Comfort of Older People in Vulnerable Urban Areas in a Warming World
Quantifying interactive effects of people and built-environment on urban park cooling benefits, a case study of Shanghai
Not even past
An integrated approach for analysing land surface temperature, heatwave and air pollution for sustainable planning in Delhi and its environs, India
Transformation of urban heat island in the three-center city of Seoul, South Korea
Building community heat action plans story by story
The price of heat
Spatial planning for thermal comfort justice in an era of climate extremes
Urban heat islands and the transformation of Singapore
The Decision-Making/Accountability Spatial Incongruence Problem for Research Linking Environmental Science and Policy
The Climate of London
Ecosystem services and urban heat riskscape moderation
The energetic basis of the urban heat island
Urban greening to cool towns and cities
Two decades of urban climate research
The influence of trees and grass on outdoor thermal comfort in a hot‐arid environment
Seasonal variations in the cooling effect of urban green areas on surrounding urban areas
Cool surfaces and shade trees to reduce energy use and improve air quality in urban areas
Impact of urban form and design on mid-afternoon microclimate in Phoenix Local Climate Zones
A study on the cooling effects of greening in a high-density city
Urban climates and heat islands
Local Climate Zones for Urban Temperature Studies
The effectiveness of cool and green roofs as urban heat island mitigation strategies
Seasonal hydroclimatic impacts of Sun Corridor expansion
Residential Land Use, the Urban Heat Island, and Water Use in Phoenix
Urbanization and global environmental change
Neighborhood microclimates and vulnerability to heat stress
| Unique citing works | 61 |
|---|---|
| Citations per year | 6,1 |
| Citation span | 2016 - 2026 (11) |
| Citation velocity | current |
| Highly cited | No |
| Citation types | Neutral: 57 |