A comparison of landscape fuel treatment strategies to mitigate wildland fire risk in the urban interface and preserve old forest structure

被引:230
作者
Ager, Alan A. [1 ]
Valliant, Nicole M. [2 ]
Finney, Mark A. [3 ]
机构
[1] US Forest Serv, USDA, Pacific NW Res Stn, Western Wildlands Environm Threat Assessment Ctr, Prineville, OR 97754 USA
[2] US Forest Serv, USDA, Adapt Management Serv Enterprise Team, Nevada City, CA 95959 USA
[3] US Forest Serv, USDA, Rocky Mt Res Stn, Fire Sci Lab, Missoula, MT 59808 USA
关键词
Wildfire risk; Wildland urban interface; Burn probability; Wildfire simulation models; RELATIVE RISK; WILDFIRE RISK; OREGON; SPREAD; GROWTH; REDUCTION; SEVERITY; TERM; PROBABILITY; SIMULATION;
D O I
10.1016/j.foreco.2010.01.032
中图分类号
S7 [林业];
学科分类号
0829 ; 0907 ;
摘要
We simulated fuel reduction treatments on a 16,000 ha study area in Oregon, US, to examine tradeoffs between placing fuel treatments near residential structures within an urban interface, versus treating stands in the adjacent wildlands to meet forest health and ecological restoration goals. The treatment strategies were evaluated by simulating 10,000 wildfires with random ignition locations and calculating burn probabilities by 0.5 m flame length categories for each 30 m x 30 m pixel in the study area. The burn conditions for the wildfires were chosen to replicate severe fire events based on 97th percentile historic weather conditions. The burn probabilities were used to calculate wildfire risk profiles for each of the 170 residential structures within the urban interface, and to estimate the expected (probabilistic) wildfire mortality of large trees (>53.3 cm) that are a key indicator of stand restoration objectives. Expected wildfire mortality for large trees was calculated by building flame length mortality functions using the Forest Vegetation Simulator, and subsequently applying these functions to the burn probability outputs. Results suggested that treatments on a relatively minor percentage of the landscape (10%) resulted in a roughly 70% reduction in the expected wildfire loss of large trees for the restoration scenario. Treating stands near residential structures resulted in a higher expected loss of large trees, but relatively lower burn probability and flame length within structure buffers. Substantial reduction in burn probability and flame length around structures was also observed in the restoration scenario where fuel treatments were located 5-10 km distant. These findings quantify off-site fuel treatment effects that are not analyzed in previous landscape fuel management studies. The study highlights tradeoffs between ecological management objectives on wildlands and the protection of residential structures in the urban interface. We also advance the application of quantitative risk analysis to the problem of wildfire threat assessment. Published by Elsevier B.V.
引用
收藏
页码:1556 / 1570
页数:15
相关论文
共 110 条
[1]  
Agee J.K., 2002, Fire in Oregon's forests: risks, P119
[2]  
Agee JamesK., 2002, CONSERVATION BIOL PR, V3, P18, DOI 10.1111/j.1526-4629.2002.tb00023.x
[3]   Basic principles of forest fuel reduction treatments [J].
Agee, JK ;
Skinner, CN .
FOREST ECOLOGY AND MANAGEMENT, 2005, 211 (1-2) :83-96
[4]   The use of shaded fuelbreaks in landscape fire management [J].
Agee, JK ;
Bahro, B ;
Finney, MA ;
Omi, PN ;
Sapsis, DB ;
Skinner, CN ;
van Wagtendonk, JW ;
Weatherspoon, CP .
FOREST ECOLOGY AND MANAGEMENT, 2000, 127 (1-3) :55-66
[5]  
AGER A, 2009, GEOPHYS RES ABST, V11
[6]  
Ager A.A., 2006, Fuels Management-How to Measure Success: Conference Proceedings, Proceedings of the RMRS-P-41, Portland, OR, USA, 28-30 March 2006, P163
[7]  
AGER AA, NAT HAZARDS IN PRESS
[8]   Modeling wildfire risk to northern spotted owl (Strix occidentalis caurina) habitat in Central Oregon, USA [J].
Ager, Alan A. ;
Finney, Mark A. ;
Kerns, Becky K. ;
Maffei, Helen .
FOREST ECOLOGY AND MANAGEMENT, 2007, 246 (01) :45-56
[9]   A simulation study of thinning and fuel treatments on a wildland-urban interface in eastern Oregon, USA [J].
Ager, Alan A. ;
McMahan, Andrew J. ;
Barrett, James J. ;
McHugh, Charles W. .
LANDSCAPE AND URBAN PLANNING, 2007, 80 (03) :292-300
[10]   MODELING THE SPREAD OF GRASS FIRES [J].
ANDERSON, DH ;
CATCHPOLE, EA ;
DEMESTRE, NJ ;
PARKES, T .
JOURNAL OF THE AUSTRALIAN MATHEMATICAL SOCIETY SERIES B-APPLIED MATHEMATICS, 1982, 23 (APR) :451-466