Downward Spread of Smoldering Peat Fire: the Role of Moisture, Density, and Oxygen Supply
File(s)Huang_Downward_spread_of_smouldering_CSIRO.pdf (1.74 MB)
Published version
Author(s)
huang, X
Rein, G
Type
Journal Article
Abstract
Smouldering fires in peatland are different from the flames in wildland fires. Smouldering peat fire is slow, low-temperature and more persistent, releasing large amounts of smoke into the atmosphere. In this work, we experimentally and computationally investigate the vertical downward spread of smouldering fire in a column of 30 cm-tall moss peat under variable moisture content (MC) and bulk density. The measured downward spread rate decreases with depth and wet bulk density, and is ~1 cm h−1 equivalent to a carbon emission flux of 200 tonnes day−1 ha−1. We observe that downward spread increases as MC increases substantially at least inside the range from 10 to 70%, which is not intuitive and goes against the trend observed for the horizontal spread in the same peat. We also conduct one-dimensional computational simulations to successfully reproduce the experimental observations. The analysis shows that the spread rate increases with MC and decreases with density because smouldering spread is controlled by the oxygen supply. The volume of the porous peat expands when absorbing water, which reduces the density of organic matter and decreases the heat release rate. This shows that the widely assumed conclusion that the spread rate of wildfire decreases with MC is not universal when applied to smouldering fires.
Date Issued
2017-10-31
Date Acceptance
2017-08-06
Citation
International Journal of Wildland Fire, 2017, 26 (11), pp.907-918
ISSN
1049-8001
Publisher
CSIRO
Start Page
907
End Page
918
Journal / Book Title
International Journal of Wildland Fire
Volume
26
Issue
11
Copyright Statement
© The Authors 2017 Open Access CC BY-NC-ND (https://creativecommons.org/licenses/by-nc-nd/4.0/), published on behalf of IAWF
Sponsor
Engineering & Physical Science Research Council (E
Commission of the European Communities
Grant Number
EPSRC Prize Fellowship 2012/13
682587
Subjects
Science & Technology
Life Sciences & Biomedicine
Forestry
carbon emission
fire spread rate
in-depth spread
modelling
peatland
ORGANIC SOILS
COMBUSTION
WILDFIRES
IGNITION
KINETICS
BIOMASS
DEPTH
BURN
0705 Forestry Sciences
0502 Environmental Science And Management
0602 Ecology
Publication Status
Published