Matching Items (73)
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Description
Air pollution is a serious problem in most urban areas around the world, which has a number of negative ecological and human health impacts. As a result, it's vitally important to detect and characterize air pollutants to protect the health of the urban environment and our citizens. An important early

Air pollution is a serious problem in most urban areas around the world, which has a number of negative ecological and human health impacts. As a result, it's vitally important to detect and characterize air pollutants to protect the health of the urban environment and our citizens. An important early step in this process is ensuring that the air pollution monitoring network is properly designed to capture the patterns of pollution and that all social demographics in the urban population are represented. An important aspect in characterizing air pollution patterns is scale in space and time which, along with pattern and process relationships, is a key subject in the field of landscape ecology. Thus, using multiple landscape ecological methods, this dissertation research begins by characterizing and quantifying the multi-scalar patterns of ozone (O3) and particulate matter (PM10) in the Phoenix, Arizona, metropolitan region. Results showed that pollution patterns are scale-dependent, O3 is a regionally-scaled pollutant at longer temporal scales, and PM10 is a locally-scaled pollutant with patterns sensitive to season. Next, this dissertation examines the monitoring network within Maricopa County. Using a novel multiscale indicator-based approach, the adequacy of the network was quantified by integrating inputs from various academic and government stakeholders. Furthermore, deficiencies were spatially defined and recommendations were made on how to strengthen the design of the network. A sustainability ranking system also provided new insight into the strengths and weaknesses of the network. Lastly, the study addresses the question of whether distinct social groups were experiencing inequitable exposure to pollutants - a key issue of distributive environmental injustice. A novel interdisciplinary method using multi-scalar ambient pollution data and hierarchical multiple regression models revealed environmental inequities between air pollutants and race, ethnicity, age, and socioeconomic classes. The results indicate that changing the scale of the analysis can change the equitable relationship between pollution and demographics. The scientific findings of the scale-dependent relationships among air pollution patterns, network design, and population demographics, brought to light through this study, can help policymakers make informed decisions for protecting the human health and the urban environment in the Phoenix metropolitan region and beyond.
ContributorsPope, Ronald L (Author) / Wu, Jianguo (Thesis advisor) / Boone, Christopher G. (Committee member) / Brazel, Anthony J. (Committee member) / Forzani, Erica S. (Committee member) / Fraser, Matthew P. (Committee member) / Arizona State University (Publisher)
Created2014
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Description

Objectives: Conflicting findings on associations between food and physical activity (PA) environments and children's weight status demand attention in order to inform effective interventions. We assess relationships between the food and PA environments in inner-city neighborhoods and children's weight status and address sources of conflicting results of prior research.

Methods:

Objectives: Conflicting findings on associations between food and physical activity (PA) environments and children's weight status demand attention in order to inform effective interventions. We assess relationships between the food and PA environments in inner-city neighborhoods and children's weight status and address sources of conflicting results of prior research.

Methods: Weight status of children ages 3-18 was assessed using parent-measured heights and weights. Data were collected from 702 children living in four low-income cities in New Jersey between 2009 and 2010. Proximity of a child's residence to a variety of food and PA outlets was measured in multiple ways using geo-coded data. Multivariate analyses assessed the association between measures of proximity and weight status.

Results: Significant associations were observed between children's weight status and proximity to convenience stores in the 1/4 mile radius (OR = 1.9) and with presence of a large park in the 1/2 mile radius (OR = 0.41). No associations were observed for other types of food and PA outlets.

Conclusions: Specific aspects of the food and PA environments are predictors of overweight and obese status among children, but the relationships and their detection are dependent upon aspects of the geospatial landscape of each community.

ContributorsOhri-Vachaspati, Punam (Author) / Lloyd, Kristen (Author) / DeLia, Derek Michael, 1969- (Author) / Tulloch, David (Author) / Yedidia, Michael J., 1946- (Author)
Created2013-05-30
Description

This study investigates the impact of urban form and landscaping type on the mid-afternoon microclimate in semi-arid Phoenix, Arizona. The goal is to find effective urban form and design strategies to ameliorate temperatures during the summer months. We simulated near-ground air temperatures for typical residential neighborhoods in Phoenix using the

This study investigates the impact of urban form and landscaping type on the mid-afternoon microclimate in semi-arid Phoenix, Arizona. The goal is to find effective urban form and design strategies to ameliorate temperatures during the summer months. We simulated near-ground air temperatures for typical residential neighborhoods in Phoenix using the three-dimensional microclimate model ENVI-met. The model was validated using weather observations from the North Desert Village (NDV) landscape experiment, located on the Arizona State University's Polytechnic campus. The NDV is an ideal site to determine the model's input parameters, since it is a controlled environment recreating three prevailing residential landscape types in the Phoenix metropolitan area (mesic, oasis, and xeric). After validation, we designed five neighborhoods with different urban forms that represent a realistic cross-section of typical residential neighborhoods in Phoenix. The scenarios follow the Local Climate Zone (LCZ) classification scheme after Stewart and Oke. We then combined the neighborhoods with three landscape designs and, using ENVI-met, simulated microclimate conditions for these neighborhoods for a typical summer day. Results were analyzed in terms of mid-afternoon air temperature distribution and variation, ventilation, surface temperatures, and shading. Findings show that advection is important for the distribution of within-design temperatures and that spatial differences in cooling are strongly related to solar radiation and local shading patterns. In mid-afternoon, dense urban forms can create local cool islands. Our approach suggests that the LCZ concept is useful for planning and design purposes.

ContributorsMiddel, Ariane (Author) / Hab, Kathrin (Author) / Brazel, Anthony J. (Author) / Martin, Chris A. (Author) / Guhathakurta, Subhrajit (Author)
Created2014-02
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Description

Summer daytime cooling efficiency of various land cover is investigated for the urban core of Phoenix, Arizona, using the Local-Scale Urban Meteorological Parameterization Scheme (LUMPS). We examined the urban energy balance for 2 summer days in 2005 to analyze the daytime cooling-water use tradeoff and the timing of sensible heat

Summer daytime cooling efficiency of various land cover is investigated for the urban core of Phoenix, Arizona, using the Local-Scale Urban Meteorological Parameterization Scheme (LUMPS). We examined the urban energy balance for 2 summer days in 2005 to analyze the daytime cooling-water use tradeoff and the timing of sensible heat reversal at night. The plausibility of the LUMPS model results was tested using remotely sensed surface temperatures from Advanced Spaceborne Thermal Emission and Reflection Radiometer (ASTER) imagery and reference evapotranspiration values from a meteorological station. Cooling efficiency was derived from sensible and latent heat flux differences. The time when the sensible heat flux turns negative (sensible heat flux transition) was calculated from LUMPS simulated hourly fluxes. Results indicate that the time when the sensible heat flux changes direction at night is strongly influenced by the heat storage capacity of different land cover types and by the amount of vegetation. Higher heat storage delayed the transition up to 3 h in the study area, while vegetation expedited the sensible heat reversal by 2 h. Cooling efficiency index results suggest that overall, the Phoenix urban core is slightly more efficient at cooling than the desert, but efficiencies do not increase much with wet fractions higher than 20%. Industrial sites with high impervious surface cover and low wet fraction have negative cooling efficiencies. Findings indicate that drier neighborhoods with heterogeneous land uses are the most efficient landscapes in balancing cooling and water use in Phoenix. However, further factors such as energy use and human vulnerability to extreme heat have to be considered in the cooling-water use tradeoff, especially under the uncertainties of future climate change.

ContributorsMiddel, Ariane (Author) / Brazel, Anthony J. (Author) / Kaplan, Shai (Author) / Myint, Soe W. (Author)
Created2012-08-12
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Description

Urban environmental measurements and observational statistics should reflect the properties generated over an adjacent area of adequate length where homogeneity is usually assumed. The determination of this characteristic source area that gives sufficient representation of the horizontal coverage of a sensing instrument or the fetch of transported quantities is of

Urban environmental measurements and observational statistics should reflect the properties generated over an adjacent area of adequate length where homogeneity is usually assumed. The determination of this characteristic source area that gives sufficient representation of the horizontal coverage of a sensing instrument or the fetch of transported quantities is of critical importance to guide the design and implementation of urban landscape planning strategies. In this study, we aim to unify two different methods for estimating source areas, viz. the statistical correlation method commonly used by geographers for landscape fragmentation and the mechanistic footprint model by meteorologists for atmospheric measurements. Good agreement was found in the intercomparison of the estimate of source areas by the two methods, based on 2-m air temperature measurement collected using a network of weather stations. The results can be extended to shed new lights on urban planning strategies, such as the use of urban vegetation for heat mitigation. In general, a sizable patch of landscape is required in order to play an effective role in regulating the local environment, proportional to the height at which stakeholders’ interest is mainly concerned.

ContributorsWang, Zhi-Hua (Author) / Fan, Chao (Author) / Myint, Soe (Author) / Wang, Chenghao (Author) / Ira A. Fulton Schools of Engineering (Contributor)
Created2016-11-10
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Description

We quantified the spatio-temporal patterns of land cover/land use (LCLU) change to document and evaluate the daytime surface urban heat island (SUHI) for five hot subtropical desert cities (Beer Sheva, Israel; Hotan, China; Jodhpur, India; Kharga, Egypt; and Las Vegas, NV, USA). Sequential Landsat images were acquired and classified into

We quantified the spatio-temporal patterns of land cover/land use (LCLU) change to document and evaluate the daytime surface urban heat island (SUHI) for five hot subtropical desert cities (Beer Sheva, Israel; Hotan, China; Jodhpur, India; Kharga, Egypt; and Las Vegas, NV, USA). Sequential Landsat images were acquired and classified into the USGS 24-category Land Use Categories using object-based image analysis with an overall accuracy of 80% to 95.5%. We estimated the land surface temperature (LST) of all available Landsat data from June to August for years 1990, 2000, and 2010 and computed the urban-rural difference in the average LST and Normalized Difference Vegetation Index (NDVI) for each city. Leveraging non-parametric statistical analysis, we also investigated the impacts of city size and population on the urban-rural difference in the summer daytime LST and NDVI. Urban expansion is observed for all five cities, but the urbanization pattern varies widely from city to city. A negative SUHI effect or an oasis effect exists for all the cities across all three years, and the amplitude of the oasis effect tends to increase as the urban-rural NDVI difference increases. A strong oasis effect is observed for Hotan and Kharga with evidently larger NDVI difference than the other cities. Larger cities tend to have a weaker cooling effect while a negative association is identified between NDVI difference and population. Understanding the daytime oasis effect of desert cities is vital for sustainable urban planning and the design of adaptive management, providing valuable guidelines to foster smart desert cities in an era of climate variability, uncertainty, and change.

ContributorsFan, Chao (Author) / Myint, Soe (Author) / Kaplan, Shai (Author) / Middel, Ariane (Author) / Zheng, Baojuan (Author) / Rahman, Atiqur (Author) / Huang, Huei-Ping (Author) / Brazel, Anthony J. (Author) / Blumberg, Dan G. (Author) / College of Liberal Arts and Sciences (Contributor)
Created2017-06-30
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Description
Urban growth, from regional sprawl to global urbanization, is the most rapid, drastic, and irreversible form of human modification to the natural environment. Extensive land cover modifications during urban growth have altered the local energy balance, causing the city warmer than its surrounding rural environment, a phenomenon known as an

Urban growth, from regional sprawl to global urbanization, is the most rapid, drastic, and irreversible form of human modification to the natural environment. Extensive land cover modifications during urban growth have altered the local energy balance, causing the city warmer than its surrounding rural environment, a phenomenon known as an urban heat island (UHI). How are the seasonal and diurnal surface temperatures related to the land surface characteristics, and what land cover types and/or patterns are desirable for ameliorating climate in a fast growing desert city? This dissertation scrutinizes these questions and seeks to address them using a combination of satellite remote sensing, geographical information science, and spatial statistical modeling techniques.

This dissertation includes two main parts. The first part proposes to employ the continuous, pixel-based landscape gradient models in comparison to the discrete, patch-based mosaic models and evaluates model efficiency in two empirical contexts: urban landscape pattern mapping and land cover dynamics monitoring. The second part formalizes a novel statistical model called spatially filtered ridge regression (SFRR) that ensures accurate and stable statistical estimation despite the existence of multicollinearity and the inherent spatial effect.

Results highlight the strong potential of local indicators of spatial dependence in landscape pattern mapping across various geographical scales. This is based on evidence from a sequence of exploratory comparative analyses and a time series study of land cover dynamics over Phoenix, AZ. The newly proposed SFRR method is capable of producing reliable estimates when analyzing statistical relationships involving geographic data and highly correlated predictor variables. An empirical application of the SFRR over Phoenix suggests that urban cooling can be achieved not only by altering the land cover abundance, but also by optimizing the spatial arrangements of urban land cover features. Considering the limited water supply, rapid urban expansion, and the continuously warming climate, judicious design and planning of urban land cover features is of increasing importance for conserving resources and enhancing quality of life.
ContributorsFan, Chao (Author) / Myint, Soe W (Thesis advisor) / Li, Wenwen (Committee member) / Rey, Sergio J (Committee member) / Arizona State University (Publisher)
Created2016
Description

The ASU School of Dance presents Undergraduate Projects Showing, October 25-26, with works by undergraduate dance students, performed at Margaret Gisolo Dance Studio.

ContributorsPinholster, Jacob (Director, Artistic director) / Koch, Carolyn (Production manager) / Rex, Melissa S. (Technical director, Lighting designer) / Swayze, William (Musician) / Benard, Jacqueline (Costume designer) / Mihaleva, Galina (Costume designer) / Dodt, Alli (Artistic director) / Edwards, Allison (Artistic director, Performer) / Levin, Felicia (Performer) / Hughes, Haylee (Performer) / Groom, Léla (Performer) / Gastelo, Jr., Gabriel (Lighting designer) / Singleton, Kiah (Choreographer, Lighting designer, Costume designer, Performer) / DeSantis, Kimberly (Performer) / Freirich, Gordon (Performer) / Harkey, Noah (Performer) / Nguyen, Dana (Performer) / Bartholomew, Jessica (Choreographer, Musician, Costume designer) / Dorrel, Kayla (Performer) / Johnson, Sarah (Performer) / LeBlanc, Casey (Performer) / Norris, Sarah (Performer) / Rivera, Paola (Performer) / Sammons, Rylee (Performer) / Soto, Jose (Performer) / Wardarski, Jessie (Performer) / Witzke, Nikki (Performer, Choreographer, Costume designer) / Moraco, Steve (Videographer, Videographer) / Jackson, Sydney (Choreographer, Costume designer) / Castronova, Naomi (Performer) / Garcia, Lacee (Performer) / Keefe, Shelby (Performer) / Kerr, Elena (Performer) / Waitz, Jessica (Performer) / Riojas, David (Choreographer, Costume designer) / Calvano, Jourdan (Performer) / Locker, Rain (Performer) / Pullman, Gracie (Performer) / Reis, Ashley (Performer) / Nunn, Jasmine (Choreographer, Costume designer) / Koji, Saito (Musician) / Avery, Vickie (Musician) / Salcido, Alejandro (Lighting designer) / Baker, Ashley (Performer) / Siegfried, Jordyn (Performer) / Yoder, Allyson (Performer) / Gallagher, Grace (Choreographer, Costume designer, Videographer, Performer) / Dix, Geoffrey (Musician) / Stephens, Alexis (Choreographer, Costume designer, Performer) / Keating, Zoe (Musician) / Hernandez, Martha "Patty" (Choreographer, Costume designer, Performer) / Yuen, Priscilla (Performer) / Herberger Institute School of Dance (Musician)
Created2012
Description

The ASU School of Dance presents School of Dance LIVE!, September 7-9, with works by dance faculty, performed at Galvin Playhouse.

ContributorsPinholster, Jacob (Director) / Koch, Carolyn (Artistic director, Production manager, Lighting designer) / Swayze, William (Musician, Performer, Composer) / Jones, Ben (Performer) / Mack, Austen (Performer) / Ortego, Garrett (Performer) / Benard, Jacqueline (Costume designer, Creator) / Burk, Ashley (Collaborator deprecated, use Contributor, Performer) / Arredondo, Julia (Performer) / Groom, Léla (Performer) / Giordano, Erin (Performer) / Bouey, Billie-Joe "J." (Performer) / Bartholomew, Jessica (Performer) / Chapman, Eric (Collaborator deprecated, use Contributor)) / Peterson, Haley (Collaborator deprecated, use Contributor)) / Vissicaro, Pegge (Collaborator deprecated, use Contributor)) / Mitchell, John D. (Designer, Musician) / Standley, Eileen (Designer, Choreographer, Performer) / Kyriakides, Yannis (Composer) / Tomooka, Kayla (Performer) / Waitz, Jessica (Performer) / McNutt, Eden (Costume designer, Performer) / DeWitt, Inertia (Musician, Performer) / Murphey, Claudia (Director, Interviewer) / Mumford, Jessica (Videographer, Editor) / Britt, Melissa (Choreographer, Costume designer, Performer) / Alvarez, Emily (Musician) / Salcido, Alejandro (Lighting designer) / Calleros, Vince (Performer) / Dimmick, Saza (Performer) / Granado, Michaela (Performer) / Kusch, Liz (Performer) / Lopez, Cassidy (Performer) / Kaplan, Rob (Composer, Performer) / Rex, Melissa S. (Choreographer, Lighting designer, Technical director) / Bocchino, Corinne (Performer, Performer) / Mihaleva, Galina (Costume designer, Creator) / Cooper, Carol (Performer) / Crissman, Angel (Performer) / Bouey, J (Performer) / Bouey, Majee (Performer) / Bouey, Najee (Performer) / Matthews, Emily (Performer) / Vago, Haley (Performer) / Witzke, Nikki (Performer) / Goodson, Naomi (Performer) / Levin, Felicia (Performer) / Gonzales, Anthony (Performer) / Hughs, Haylee (Performer) / Ling, Amanda (Performer) / Pourzal, Kristopher K. Q. (Performer) / Munoz, Jessica (Performer) / Peterson, Britta (Performer) / Poto, Ana Maria (Performer) / Rickert, Austin (Performer) / Schupp, Karen (Director, Costume designer, Performer) / McMahon Ward, Frances (Editor) / Khoilian, Jarek (Cinematographer) / Heath, Jason (Musician) / Page, Martin (Composer) / Fairweather, Brian (Composer) / Thornton, Trevor (Composer) / Richardson, Chris (Composer) / Fitzgerald, Mary (Choreographer, Performer) / Ford, Lindsey (Performer) / Garibay, Elissa (Performer) / Barrett, Kristen (Performer) / Herberger Institute School of Dance (Musician)
Created2012
Description

The ASU School of Dance presents Emerging Artists I, February 9-12, with works by guest artists, dance faculty, and students, performed at Dance Studio Theatre, PEBE 132.

ContributorsSedlack, Kate (Choreographer, Lighting designer, Costume designer) / Bormann, Megan (Dancer) / Brack, Ashley (Dancer) / Hauk, Chelsey (Dancer) / Koeppel, Alex (Dancer) / Pesque, Julia (Dancer) / Roberts, Cassie (Dancer) / Roethler, Eva (Dancer) / Spenceley, Jenni (Dancer) / Trujillo, David (Dancer) / Fitzgerald, Mary (Artistic director, Choreographer, Lighting designer, Costume designer) / Ammerman, Mark C. (Technical director, Set designer, Lighting designer) / Benard, Jacqueline (Costume designer) / Mihaleva, Galina (Costume designer) / Swayze, William (Sound designer, Composer) / Archambault, Jared (Stage manager) / King, Natalie (Dancer) / Skrentny, Adrian (Choreographer, Lighting designer, Costume designer, Set designer, Dancer) / Bajromovic, Saban (Musician) / Parsons, Niamh (Musician) / Cortez, Sarah (Dancer) / Galindo, Rolanda (Dancer) / Kenworthy, Julianna (Dancer, Choreographer, Costume designer) / Kriston, Jordan (Dancer) / Wong, Jennifer (Dancer) / Taylor, Michelle (Choreographer) / Hart, Keira (Lighting designer) / Smith, Vanessa (Costume designer, Dancer) / Chesley, Andrea (Choreographer, Lighting designer, Costume designer, Dancer) / Chappman, Richard (Composer, Performer) / Childers, Emily (Dancer) / Cortez, Maggie (Dancer) / Howe, Martha E. (Choreographer) / Blake, Casey (Lighting designer) / Blukis, Audrey (Dancer) / Holcman, Sarah (Choreographer, Lighting designer, Costume designer, Set designer) / Lecuona, Margarita (Musician) / Santaolalla, Gustavo (Musician) / Aste, Cuti (Musician) / Lobos, Jorge (Musician) / Zamora, Maria Esther (Musician) / González, Polito (Musician) / Lindl, Roberto (Musician) / Sternke, Amy (Dancer) / Anderson, Laurie (Musician) / McGloin, Aaron (Lighting designer) / Bingle, Meghan (Dancer) / Jordan, Paul (Dancer) / Kuo, Alexis I-Cheng (Dancer) / Lederman, Christiana (Dancer) / Lerner, Kristin (Dancer) / Parish, Sara (Dancer) / Hatzis, Amy E. (Choreographer, Composer, Costume designer, Lighting designer) / Dumont, Marguerite (Dancer) / Ebling, Brett (Dancer) / Kettner, Lauren (Dancer) / Pannier, Nicci (Dancer) / Kelley, Jean (Costume designer, Dancer) / Monk, Meredith (Composer) / Kriston, Micah (Choreographer, Lighting designer, Costume designer) / Fox, Stacey (Cinematographer) / Herberger Institute School of Dance (Musician)
Created2006