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Comparison of Techniques for Visualising Fire Behaviour

机译:可视化火灾行为的技术比较

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During every Australian summer fires are common in the south-eastern region of the continent. The combined forces of climate, topography and vegetation make Victoria in particular, one of the most fire prone regions on earth (DSE 2003). Throughout its history, Victoria has seen a number of devastating bushfires, including Black Friday 1939, Ash Wednesday 1983, and more recently in the northeast of the State in 2003. The loss of life combined with the damage caused to land and property results in a heavy cost to the community. In Victoria, two of the organizations involved in fire management are the Victorian Department of Sustainability and Environment (DSE) and the Country Fire Authority (CFA). Both use fire ‘meters’ to determine potential fire behaviour given certain conditions. Values for temperature, wind speed, fuel load and vegetation type are input and a numerical estimate of fire danger given. There are a number of different meters used for different locations and environmental types. The most common meter used in Victoria is the McArthur Meter (CSIR0 2001b). The output data from this meter is numerical, and provides no spatial representation of fire danger. This paper looks at a variety of techniques used to visualise the numerical output from the McArthur Forest Fire Danger Meter. The article outlines the different models used by fire managers to simulate a fire situation, to assess future scenarios and for decision making involving fire management. Particular emphasis is placed on the McArthur Forest Fire Danger Meter as this is commonly used by fire departments in Australia. The article then focuses on geographical visualisation and a number of techniques employed to convey spatial information are discussed. The article then goes on to describe the fire simulation prototypes created for a study, a visualisation proof-of-concept product for organizations involved in managing bushfires in Australia. Finally, results from the evaluation of the prototype are presented.
机译:在每个澳大利亚夏季,该大陆的东南部都会发生大火。气候,地形和植被的综合力量使维多利亚州成为地球上最容易发生火灾的地区之一(DSE 2003)。纵观其历史,维多利亚州经历了许多毁灭性的大火,包括1939年的黑色星期五,1983年的灰星期三,以及最近在2003年的州东北部。生命的丧失与土地和财产的破坏共同导致给社区带来沉重的成本。在维多利亚州,参与消防管理的两个组织是维多利亚州可持续与环境部(DSE)和国家消防局(CFA)。在特定条件下,两者都使用着火“仪表”来确定潜在的着火行为。输入温度,风速,燃料负荷和植被类型的值,并给出火灾危险的数值估计。有许多用于不同位置和环境类型的仪表。维多利亚州最常用的仪表是麦克阿瑟仪表(CSIR0 2001b)。该仪表的输出数据是数字的,不能提供火灾危险的空间表示。本文研究了用于可视化麦克阿瑟森林火灾危险仪表的数值输出的各种技术。本文概述了消防经理用来模拟火灾情况,评估未来情况以及进行涉及火灾管理的决策的不同模型。由于麦克阿瑟(McArthur)森林火灾危险仪表在澳大利亚的消防部门中经常使用,因此特别强调。然后,本文重点介绍地理可视化,并讨论了用于传达空间信息的多种技术。然后,本文继续介绍为研究创建的火灾模拟原型,这是一种可视化的概念验证产品,适用于参与澳大利亚丛林大火管理的组织。最后,给出了原型评估的结果。

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