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This research explores Western society’s inability to address climate change substantively and the pathology of modernity. This dissertation resulted in two deliverables: (1) a persuasive critical literature review that defined and framed the pathology of modernity, and (2) an autoethnography on the pathology of modernity. Paper one showed the connections

This research explores Western society’s inability to address climate change substantively and the pathology of modernity. This dissertation resulted in two deliverables: (1) a persuasive critical literature review that defined and framed the pathology of modernity, and (2) an autoethnography on the pathology of modernity. Paper one showed the connections linking climate change and colonization by drawing on political ecology, Indigenous studies, environmental justice, sociology, postcolonial studies, and decolonial studies. After building a case for Western society’s responsibility for climate change, depth psychology was used to examine why many of contemporary society’s Western leaders tend to deny or ignore climate change and related systemic issues. This mindset is proposed to be an expression of a societal illness I define as the pathology of modernity. In paper two, the pathology of modernity is described through an autoethnography of my community organizing. This research used both a decolonial methodology as well as was inspired by grounded theory. Methods for the deliverables included a critical argumentative literature review and autoethnography. This research intends to change the conversation around climate change, addressing the structural power-based issues and mentality in Western society that prevents climate justice and climate action.
ContributorsTekola, Sarra (Author) / Cloutier, Scott (Thesis advisor) / Swadener, Beth (Committee member) / Amira de la Garza, Sarah (Committee member) / Arizona State University (Publisher)
Created2022
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