Exploring fire response to high wind speeds: fire rate of spread, energy release and flame residence time from fires burned in pine needle beds under winds up to 27 ms−1
Autor: | Cyle Wold, Paul Sopko, Daniel Jimenez, Benjamin Hornsby, Larry S. Bradshaw, Joseph J. O'Brien, Justin Landon, Bret W. Butler, Wesley G. Page, Loren Atwood, Murray Morrison, Christine D. Standohar-Alfano, Natalie S. Wagenbrenner, Steve Quarles |
---|---|
Rok vydání: | 2020 |
Předmět: |
040101 forestry
010504 meteorology & atmospheric sciences Ecology Constant flow Fire response Forestry 04 agricultural and veterinary sciences Residence time (fluid dynamics) Atmospheric sciences 01 natural sciences Wind speed Radiant heating Rate of spread Range (aeronautics) Radiative transfer 0401 agriculture forestry and fisheries Environmental science 0105 earth and related environmental sciences |
Zdroj: | International Journal of Wildland Fire. 29:81 |
ISSN: | 1049-8001 |
Popis: | The relationship between wildland fire spread rate and wind has been a topic of study for over a century, but few laboratory studies report measurements in controlled winds exceeding 5ms−1. In this study, measurements of fire rate of spread, flame residence time and energy release are reported for fires burning under controlled atmospheric conditions in shallow beds of pine needles subject to winds ranging from 0 to 27ms−1 (measured 5m above ground level). The data suggested that under constant flow conditions when winds are less than 10ms−1, fire rate of spread increases linearly at a rate of ~3% of the wind speed, which generally agrees with other laboratory-based models. When wind speed exceeds 10ms−1, the fire rate of spread response to wind remains linear but with a much stronger dependence, spreading at a rate of ~13% of the wind speed. Radiative and convective heating correlated directly to wind speed, with radiant heating increasing approximately three-fold as much as convective heating over the range of winds explored. The data suggested that residence time is inversely related to wind speed and appeared to approach a lower limit of ~20s as wind exceeded 15ms−1. Average flame residence time over the range of wind speeds was nominally 26s. |
Databáze: | OpenAIRE |
Externí odkaz: |