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System Dynamics Modeling for Agricultural and Natural Resource Management Issues: Review of Some Past Cases and Forecasting Future Roles

机译:农业和自然资源管理问题的系统动力学建模:回顾一些过去的案例并预测未来的作用

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Contemporary issues in agriculture and natural resource management (AGNR) span a wide spectrum of challenges and scales—from global climate change to resiliency in national and regional food systems to the sustainability of livelihoods of small-holder farmers—all of which may be characterized as complex problems. With rapid development of tools and technologies over the previous half century (e.g., computer simulation), a plethora of disciplines have developed methods to address individual components of these multifaceted, complex problems, oftentimes neglecting unintended consequences to other systems. A systems thinking approach is needed to (1) address these contemporary AGNR issues given their multi- and interdisciplinary aspects; (2) utilize a holistic perspective to accommodate all of the elements of the problem; and (3) include qualitative and quantitative techniques to incorporate “soft” and “hard” elements into the analyses. System dynamics (SD) methodology is uniquely suited to investigate AGNR given their inherently complex behaviors. In this paper, we review applications of SD to AGNR and discuss the potential contributions and roles of SD in addressing emergent problems of the 21st century. We identified numerous SD cases applied to water, soil, food systems, and smallholder issues. More importantly, several case studies are shown illustrating the tradeoffs between short-term and long-term strategies and the pitfalls of relying on quick fixes to AGNR problems (known as “fixes that backfire” and “shifting the burden”, well-known, commonly occurring, systemic structures—or archetypes—observed across numerous management situations [Senge, P.M. The Fifth Discipline , 1st ed.; Doubleday: New York, NY, USA, 1990.]). We conclude that common attempts to alleviate AGNR problems, across continents and regardless of the type of resources involved, have suffered from reliance on short-term management strategies. To effectively address AGNR problems, longer-term thinking and strategies aimed at fundamental solutions will be needed to better identify and minimize the often delayed, and unintended, consequences arising from feedback between management interventions and AGNR systems.
机译:农业和自然资源管理(AGNR)的当代问题涵盖了广泛的挑战和规模,从全球气候变化到国家和地区粮食系统的适应力,再到小农的生计可持续性,所有这些特征都可以被描述为复杂的问题。在过去的半个世纪中,随着工具和技术的快速发展(例如,计算机仿真),许多学科已经开发出解决这些多方面,复杂问题的各个组成部分的方法,这些方法通常会忽略其他系统的意外后果。需要一种系统的思维方法来(1)考虑到当代的AGNR问题涉及多学科和跨学科的问题; (2)从整体角度考虑问题的所有要素; (3)包括定性和定量技术,以将“软”和“硬”元素纳入分析。鉴于系统固有的复杂行为,系统动力学(SD)方法非常适合研究AGNR。在本文中,我们回顾了SD在AG​​NR中的应用,并讨论了SD在解决21世纪紧急问题方面的潜在贡献和作用。我们确定了许多适用于水,土壤,粮食系统和小农问题的可持续发展案例。更重要的是,展示了一些案例研究,这些案例说明了短期策略和长期策略之间的权衡,以及依靠快速解决AGNR问题(称为“事与愿违”的解决方案和“转移负担”的解决方案)的陷阱,在许多管理情况下都可以观察到的常见的系统性结构或原型(Senge,PM,《第五纪律》,第一版; Doubleday:美国纽约,纽约,1990年)。我们得出的结论是,缓解跨洲,不论涉及何种资源的AGNR问题的常见尝试都受到了短期管理策略的依赖。为了有效解决AGNR问题,将需要针对基本解决方案的长期思考和策略,以更好地识别和最小化管理干预措施与AGNR系统之间的反馈所引起的经常被延迟和意外的后果。

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