石油管辖区的系统身份和转型:阿拉斯加北坡自治市镇的多方法方法

A. Lovecraft, O. Lee, Nicholas Parlato
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摘要

由于需要整合不同的科学范式、标量数据和社会理论,捕获有限社会环境系统(SES)的多维性对跨学科研究人员提出了一系列挑战。在快速和前所未有的气候、生态、经济和社会政治变化的条件下研究当代北极环极SESs,挑战任何单一的既定方法方法,旨在为决策目的对系统进行图示和解释。作为一个在大型北极SES建模工作中工作的小型跨学科团队,我们发现开发系统模型来支持北极的弹性需要对系统动力学的理解,该系统动力学关注变化的整体指标,并进行定量和定性测量。以阿拉斯加北坡自治市镇为例,我们应用三个趋同框架来捕捉系统的重要维度,以改进问题定义,以应对北极气候变化的挑战。我们描述了当代“石油和天然气”社会生态系统的组成部分和动态,从根本上改变了系统的历史过程和转变,以及对未来变化最可能催化剂的科学预测。这一分析结果为定义次国家北极碳氢化合物SESs的类型。我们的结论是,在经历快速气候变化的不同地区,当包括难以量化的变量时,可以评估石油和天然气开发作为政策途径的未来。
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System identity and transformation in petroleum jurisdictions: A multi-method approach for the North Slope Borough, Alaska
Capturing the multidimensionality of a bounded social-environmental system (SES) presents a range of challenges to interdisciplinary researchers due to the need to integrate divergent scientific paradigms, scalar data, and social theories. Contemporary Arctic circumpolar SESs studied under conditions of rapid and unprecedented climatic, ecological, economic, and sociopolitical change, defy any singular established methodological approach that aims to schematize and interpret the system for decision-making purposes. As a small interdisciplinary team working within a large Arctic SES modeling effort, we have found that developing systems models to support resilience in the Arctic requires an understanding of system dynamics that is attentive to holistic indicators of change, measured both quantitatively and qualitatively. Using the Alaska North Slope Borough as a case study, we apply three convergent frameworks to capture significant dimensions of the system for improved problem definition in confronting the challenges of Arctic climate change. We describe contemporary “oil and gas” social-ecological system components and dynamics, the historical processes and transformations that fundamentally altered the system, and the scientific projections for the most likely catalysts of future change. This analysis results in a typology for defining subnational Arctic hydrocarbon SESs. We conclude that the future of oil and gas development as a policy pathway in different locations experiencing rapid climate change can be evaluated when difficult-to-quantify variables are included.
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