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  4. Quenching our thirst for future knowledge: participatory scenario construction and sustainable water governance in a desert city
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Quenching our thirst for future knowledge: participatory scenario construction and sustainable water governance in a desert city

Full metadata

Description

Transformational sustainability science demands that stakeholders and researchers consider the needs and values of future generations in pursuit of solutions to sustainability problems. This dissertation research focuses on the real-world problem of unsustainable water governance in the Phoenix region of Central Arizona. A sustainability transition is the local water system is necessary to overcome sustainability challenges and scenarios can be used to explore plausible and desirable futures to inform a transition, but this requires some methodological refinements. This dissertation refines scenario methodology to generate water governance scenarios for metropolitan Phoenix that: (i) feature enhanced stakeholder participation; (ii) incorporate normative values and preferences; (iii) focus on governance actors and their activities; and (iv) meet an expanded set of quality criteria. The first study in the dissertation analyzes and evaluates participatory climate change scenarios to provide recommendations for the construction and use of scenarios that advance climate adaptation and mitigation efforts. The second study proposes and tests a set of plausibility indications to substantiate or evaluate claims that scenarios and future projections could become reality, helping to establish the legitimacy of radically different or transformative scenarios among an extended peer community. The case study of water governance begins with the third study, which includes a current state analysis and sustainability appraisal of the Phoenix-area water system. This is followed by a fourth study which surveys Phoenix-area water decision-makers to better understand water-related preferences for use in scenario construction. The fifth and final study applies a multi-method approach to construct future scenarios of water governance in metropolitan Phoenix in 2030 using stakeholder preferences, among other normative frames, and testing systemic impacts with WaterSim 5.0, a dynamic simulation model of water in the region. The scenarios are boundary objects around which stakeholders can weigh tradeoffs, set priorities and reflect on impacts of water-related activities, broadening policy dialogues around water governance in central Arizona. Together the five studies advance transformational sustainability research by refining methods to engage stakeholders in crafting futures that define how individuals and institutions should operate in transformed and sustainable systems.

Date Created
2014
Contributors
  • Keeler, Lauren Withycombe (Author)
  • Wiek, Arnim (Thesis advisor)
  • White, Dave D (Committee member)
  • Lang, Daniel J (Committee member)
  • Arizona State University (Publisher)
Topical Subject
  • Sustainability
  • Water resources management
  • Climate Change
  • Future Scenarios
  • governance
  • Transition Management
  • Water
  • Climatic changes
  • Water-supply--Arizona--Phoenix Metropolitan Area--Management.
  • Water-supply
  • Water resources development--Arizona--Phoenix Metropolitan Area.
  • Water resources development
Resource Type
Text
Genre
Doctoral Dissertation
Academic theses
Extent
xi, 259 p. : ill. (some col.)
Language
eng
Copyright Statement
In Copyright
Reuse Permissions
All Rights Reserved
Primary Member of
ASU Electronic Theses and Dissertations
Peer-reviewed
No
Open Access
No
Handle
https://hdl.handle.net/2286/R.I.24834
Statement of Responsibility
by Lauren Withycombe Keeler
Description Source
Viewed on July 2, 2014
Level of coding
full
Note
Partial requirement for: Ph.D., Arizona State University, 2014
Note type
thesis
Includes bibliographical references
Note type
bibliography
Field of study: Sustainability
System Created
  • 2014-06-09 02:07:53
System Modified
  • 2021-08-30 01:35:50
  •     
  • 1 year 7 months ago
Additional Formats
  • OAI Dublin Core
  • MODS XML

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