Using Watered Landscapes to Manipulate Urban Heat Island Effects: How Much Water Will It Take to Cool Phoenix?
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- Type
- article
- Published
- 2009-12-31
- Cited by
- 225
- References
- 52
- Access
- Open access
- OpenAlex
- https://openalex.org/W2046369678
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:154852226
Keywords
Urban heat island, Phoenix, Environmental science, Urban climate, Climate change
References
- Metropolitan Phoenix: Place Making and Community Building in the Desert
- Urban Heat and Air Pollution: An Emerging Role for Planners in the Climate Change Debate
- Multispectral Image Analysis Using the Object-Oriented Paradigm
- Urbanization and warming of Phoenix (Arizona, USA): Impacts, feedbacks and mitigation
- When will Lake Mead go dry?
- Wavelet Compression and the Automatic Classification of Urban Environments Using High Resolution Multispectral Imagery and Laser Scanning Data
- Mapping riparian vegetation along rivers: old concepts and new methods
- Regional relationships between surface temperature, vegetation, and human settlement in a rapidly urbanizing ecosystem
- The energetic basis of the urban heat island
- Fractal approaches in texture analysis and classification of remotely sensed data: Comparisons with spatial autocorrelation techniques and simple descriptive statistics
- Global Climate Change Impacts in the United States
- Hybrid plume dispersion model (HPDM) improvements and testing at three field sites
- Linking satellite images and hand-held infrared thermography to observed neighborhood climate conditions
- Monitoring Intraurban temperature patterns and associated land cover in phoenix, Arizona using Landsat thermal data
- Comparison of Remote Sensing Image Processing Techniques to Identify Tornado Damage Areas from Landsat TM Data
- Boundary-layer parameterizations for applied dispersion modeling over urban areas
- An Evaluation of Four Different Wavelet Decomposition Procedures for Spatial Feature Discrimination in Urban Areas
- Human-Induced Changes in the Hydrology of the Western United States
- Linking urban water balance and energy balance models to analyse urban design options
- A Simple Scheme for Daytime Estimates of the Surface Fluxes from Routine Weather Data
Cited by
- Factors Influencing Water Consumption in Multifamily Housing in the US Southwest
- Mitigation of the urban heat island effect by using water and vegetation.
- Sustainable water management in the Southwestern USA: A case study of Phoenix, AZ; and Las Vegas, NV
- Urban Heat Island (UHI) Effect in the Puget Sound Region: Adaptation and Biomimetic Strategies to Mitigate the Effects of Climate Change
- Using Fine Resolution Orthoimagery and Spatial Interpolation to Rapidly Map Turf Grass in Suburban Massachusetts
- Green Roof Energy Balances for Native Grasses and Sedum
- Examining the Effects of Climate Change and Urban Development on Water Demand: A Multi-Scale Analysis of Future Water Demand in Hillsboro, Oregon
- Optimizing urban irrigation schemes for the trade-off between energy and water consumption
- Climate change adaptation: A green infrastructure planning framework for resilient urban regions
- Detecting the presence of an urban heat island at three major North Carolina airports; and locating climatologically appropriate sites for a Piedmont Triad weather station
- Making meaning of urban greening in the Anthropocene
- Measuring Ground-Level Urban Temperature: A Case Study of Suzhou, China
- Impacts of mesic and xeric urban vegetation on outdoor thermal comfort and microclimate in Phoenix, AZ
- Impact of urbanization on US surface climate
- Spatial patterns, processes and predictions in ecohydrology: integrating technologies to meet the challenge
- Energy flux parametrization as an opportunity to get Urban Heat Island insights: The case of Athens, Greece (Thermopolis 2009 Campaign).
- Seasonal dynamics of a suburban energy balance in Phoenix, Arizona
- Cooling and energy saving potentials of shade trees and urban lawns in a desert city
- Cooling Extent of Green Parks: A Case Study in Beijing
- The implementation of biofiltration systems, rainwater tanks and urban irrigation in a single-layer urban canopy model
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