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The provision and utility of earth science to decision-makers: synthesis and key findings

机译:地球科学对决策者的规定和效用:综合和关键发现

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摘要

This paper synthesizes important elements from case studies presented in its companion paper (Quigley et al. in Environ Syst Decis, 2019, https://doi.org/10.1007/s10669-019-09728-0) to define mutual and distinct characteristics, and to develop a more holistic understanding of how earth science was used to support diverse examples of decision-making. We identify a suite of 28 different science actions used within the case studies that are classified as pertaining to (ⅰ) evidence acquisition and analysis, (ⅱ) provision of science to target audience, or (ⅲ) enhancing future science provision and utility. Sample action pathways provide empirically evidenced, albeit simplified, examples of how scientists may contribute to the progression of science through complex decision-making frameworks. Decision trees with multiple scientific and non-scientific inputs are presented based on empirical evidence and theory to provide scientists and decision-makers with simplified examples of complex multi-step decision-making processes under conditions of risk and uncertainty. Evidence for nonlinear engagement between decision-makers and science providers is presented, including non-traditional approaches such as provision of unsolicited science through the media and stakeholders. Examples of scientifically informed, precautionary decision-making with adaptive capacity, even where economically favourable decision alternatives exist, are provided. We undertake a self-elicitation exercise of case studies to derive values and uncertainties for % scientific agreement amongst utilized inputs and % uptake of potentially relevant and available science. We observe a tendency towards increased scientific uptake with increasing scientific agreement, but this is not ubiquitous; politically affected decisions and/or complex multi-decision scenarios under time pressure complicate this relationship. An increasing need for decision-making expediency that is not met by increased availability of relevant science evidence may rely on expert judgement, based on incomplete knowledge that is manifested as large uncertainties in defining a singular value for scientific agreement and uptake. We encourage scientists to further document their experiences using the science-action classification scheme provided herein to stimulate further comparative analyses of this nature.
机译:本文从其伴文文件中提出的案例研究综合了重要元素(Quigley等人。在Environ Syst Decis,2019,https://doi.org/10.1007/S10669-019-09728-0)以定义相互和不同的特征,并为地球科学如何支持如何支持多种决策示例而制定更全面的理解。我们在案例研究中确定了一套28种不同的科学行动,这些行动被归类为(Ⅰ)证据收购和分析,(Ⅱ)提供科学,以瞄准观众,或(Ⅲ)加强未来的科学提供和效用。样本动作途径提供了经验证明的,尽管科学家如何通过复杂的决策框架促进科学家如何促进科学进展的例子。基于经验证据和理论提供了多种科学和非科学投入的决策树,为科学家和决策者提供了在风险和不确定性条件下复杂的多步决策过程的简化示例。提出了决策者和科学提供商之间非线性参与的证据,包括非传统方法,如通过媒体和利益攸关方提供未经请求的科学。提供了基于经济上有利的决策替代方案的自适应能力的科学知情,预防性决策的例子。我们对案例研究进行了自我引出的行使,以获得价值和不确定性,以获得利用投入和潜在相关和可用科学的百分比增持%科学协议的价值观和不确定性。我们遵守越来越多的科学协议,遵守科学吸调的趋势,但这并不是普遍存在的;政治上受影响的决策和/或复杂的多决策情景使这种关系复杂化。基于不完整的知识,通过增加相关科学证据的可用性,不断符合关于相关科学证据的可用性而不足的决策权宜之计。我们鼓励科学家们使用本文提供的科学行动分类方案进一步记录其经验,以刺激这种性质的进一步比较分析。

著录项

  • 来源
    《Environment systems & decisions》 |2019年第3期|349-367|共19页
  • 作者单位

    School of Earth Sciences University of Melbourne Parkville VIC 3010 Australia Department of Geological Sciences University of Canterbury Christchurch New Zealand;

    School of Mathematical Sciences University of Adelaide Adelaide SA 5005 Australia;

    GNS Science 1 Fairway Drive Lower Hutt 5010 New Zealand;

    CSIRO Data61 GPO Box 1700 Canberra ACT Australia;

    Centre for Exploration Targeting School of Earth Sciences University of Western Australia Crawley WA 6009 Australia;

    School of Agricultural Computational and Environmental Sciences and Centre for Sustainable Agricultural Systems University of Southern Queensland Toowoomba QLD 4350 Australia;

    Australian Rivers Institute Griffith University Nathan QLD 4111 Australia School of Mathematics and Statistics University of Melbourne Parkville VIC 3010 Australia;

    School of Engineering University of Tasmania Hobart TAS 7005 Australia Department of Civil and Environmental Engineering University of Strathclyde Glasgow UK;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Earth science; Policy; Decision-making; Natural disasters;

    机译:地球科学;政策;做决定;自然灾害;

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