Abstract

Fuel load and structure are fundamental drivers of fire behaviour. Accurate data is required for managers and researchers to better understand our ability to alter fire risk. While there are many ways to quantify fuel, visual assessment methods are generally considered the most efficient. Visual hazard assessments are commonly used by managers, government agencies and consultants to provide a fuel hazard score or rating but not a quantity of fuel. Many systems attempt to convert the hazard score or rating to a fuel load for use in fire behaviour models. Here we investigate whether the conversion table in the widely used Overall Fuel Hazard Guide (OFHG) matches destructively sampled fuel loads from 116 sites across five forest types. We specifically examine whether there are quantifiable differences that can be attributed to forest type. We found there is overlap between the two methods for low, moderate and high hazard categories, however for the very high and extreme hazard categories, visual assessment overestimated fuel load in four of the five forest types. Using a commonly applied fire behaviour model, we found that the overestimation of fuel load in very high and extreme hazard categories leads to an overestimation of fire behavior in these hazard categories.

Highlights

  • Fuel is one of the key drivers for fire at multiple scales. [1]

  • Sampled surface fuel loads varied from 0.30 t/ha in heathland to 23.33 t/ha in foothills forest (Table 1)

  • Surface fuel load is a common input for fire behaviour models that are routinely used as the basis for fire management decisions

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Summary

Introduction

Fuel is one of the key drivers for fire at multiple scales. Used empirical fire behaviour models incorporate measures of fuel load or structure [2,3,4]. Most forest fire behaviour models require fine fuel load—fuel particles

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