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A new method for performing smouldering combustion field experiments in peatlands and rich-organic soils

机译:一种在泥炭地和富有机质土壤中进行阴燃燃烧场试验的新方法

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摘要

Smouldering ground fires have severe environmental implications. Their main effects are the release of large amounts of carbon to the atmosphere with loses of organic soil and its biota. Quantitative data on the behaviour of smouldering wildfires are very scarce and are needed to understand its ecological effects, to validate fuel consumption and smouldering propagation models and to develop danger-rating systems. We present, for the first time, a methodology for conducting smouldering experiments in field conditions. This method provides key data to investigate smouldering combustion dynamics, acquire fire behaviour metrics and obtain indicators for ecological effects of smouldering fires. It is to be applied in all types of undisturbed soils. The experimental protocol is based on a non-electric ignition source and the monitoring system relies on combining both point and surface specific temperature measurements. The methodology has been developed and applied by means of large series of replicate experiments in highly organic soils at the forest–grassland treeline of the Peruvian Andes. The soil tested exhibited weak ignition conditions. However, transition to oxidation phase was observed, with smouldering combustion during 9¿h at 15-cm depth and residence times at temperatures above dehydration of ~22¿h.
机译:阴燃的大火具有严重的环境影响。它们的主要作用是将大量碳释放到大气中,并损失了有机土壤及其生物群。关于阴燃性野火行为的定量数据非常稀少,需要了解其生态影响,验证燃料消耗和阴燃性传播模型以及开发危险等级系统。我们首次提出了在野外条件下进行阴燃实验的方法。该方法为研究阴燃燃烧动力学,获取火灾行为指标以及获得阴燃火灾的生态影响指标提供了关键数据。它适用于所有类型的原状土壤。实验协议基于非电点火源,并且监视系统依赖于结合点和表面特定温度测量值。该方法已经通过在秘鲁安第斯山脉的森林-草原树线的高度有机土壤中进行的大量重复实验而开发和应用。测试的土壤表现出较弱的着火条件。但是,观察到了向氧化相的转变,在15 cm深度的9小时内闷燃燃烧,在高于〜22小时的脱水温度下停留时间。

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