为提高对里约热内卢Grande/Río Bravo社会环境系统的理解而建立的概念模型

J. Koch, J. Friedman, Stephanie Paladino, Sophie Plassin, Kyndra Spencer
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引用次数: 9

摘要

社会过程是人-环境系统及其动态的重要组成部分。然而,考虑到相互作用的复杂性及其空间异质性,在大范围和广泛的社会和环境多样性上建立一个紧密耦合的社会环境系统提出了一些挑战。跨界里约热内卢Grande/Río Bravo (RGB)盆地是解决这些挑战的绝佳案例研究。水资源短缺和水的过度分配存在于一个高度工程化的系统中,有广泛的水坝和复杂的协议和契约结构,这些协议和契约管理水文资源在用户之间的分配。由于没有将流域范围内的RGB建模为社会环境系统的方法存在,我们试图缩小这一差距。基于通过广泛的人种学田野调查收集的数据,我们使用了结构化、协作和综合的方法来记录RGB社会环境系统的现有知识和建模。我们评估了用于概念化RGB中人类行为的不同模型,确定需要重新定义系统的(空间)边界,并以半定量概念模型的形式产生关于社会过程与环境系统组件之间相互联系的归纳生成知识。我们的研究展示了在社会环境模型中定义“社会”的一种替代方法,是开发全流域RGB社会环境系统计算机模拟模型的第一步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Conceptual modeling for improved understanding of the Rio Grande/Río Bravo socio-environmental system
Social processes are essential components of human-environment systems and their dynamics. However, modeling a tightly coupled socio-environmental system over a large area and across wide social and environmental diversity presents several challenges, given the complexity of the interactions and their spatial heterogeneity. The transboundary Rio Grande/Río Bravo (RGB) Basin is an excellent case study to address these challenges. Water scarcity and over-allocation of water are present in a highly engineered system with extensive damming and a complex structure of agreements and compacts that govern the distribution of hydrological resources among users. Since no basin-wide approaches to modeling the RGB as a socio-environmental system exist, we attempt to close this gap. Building on data collected through extensive ethnographic fieldwork, we used a structured, collaborative, and integrative approach for documenting existing knowledge on and modeling of the RGB socio-environmental system. We assess different models for conceptualizing human behavior applied in the RGB, identify a need to redefine the (spatial) boundaries of the system and produce inductively generated knowledge about the interlinkages of social processes with environmental system components in the form of a semi-quantitative conceptual model. Our research demonstrates an alternative to ad-hoc approaches to defining “the social” in socio-environmental models and is a first step towards the development of a basin-wide computer simulation model of the RGB socio-environmental system.
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