Short-term impact of post-fire salvage logging on regeneration, hazardous fuel accumulation, and understorey development in ponderosa pine forests of the Black Hills, SD, USA
Tara L. Keyser A B D , Frederick W. Smith A and Wayne D. Shepperd CA Colorado State University, Department of Forest, Rangeland, and Watershed Stewardship, Fort Collins, CO 80523, USA.
B Present address: US Department of Agriculture, Forest Service, Southern Research Station, Bent Creek Experimental Forest, 1577 Brevard Road, Asheville, NC 28806, USA.
C US Department of Agriculture, Rocky Mountain Research Station, 240 W Prospect, Fort Collins, CO 80526, USA. [Retired]
D Corresponding author. Email: tkeyser@fs.fed.us
International Journal of Wildland Fire 18(4) 451-458 https://doi.org/10.1071/WF08004
Submitted: 8 January 2008 Accepted: 25 July 2008 Published: 29 June 2009
Abstract
We examined the impacts of post-fire salvage logging on regeneration, fuel accumulation, and understorey vegetation and assessed whether the effects of salvage logging differed between stands burned under moderate and high fire severity following the 2000 Jasper Fire in the Black Hills. In unsalvaged sites, fire-related tree mortality created a large standing pool of available fuel, resulting in a rapid increase in surface fuel loads. After 5 years, fine woody debris (FWD) and coarse woody debris (CWD) increased ~1380% and 980% in unsalvaged sites, resulting in FWD and CWD loads of 13 and 25 Mg ha–1, respectively. In contrast, salvage logging limited the rate of accumulation of FWD to ~110% over the same time period and total accumulation of CWD to 16 Mg ha–1. In moderate-severity sites, regeneration was 75% lower in salvaged sites owing to low seed-tree retention, suggesting a re-evaluation of salvage guidelines during future operations in the Black Hills. The likelihood of timely regeneration in high-severity sites, regardless of salvage treatment, is low. We found no discernible effect of salvage logging on understorey development 5 years after fire. Logging caused neither a reduction in total plant cover nor an increase in the abundance of exotic species.
Additional keywords: exotic species, fuel load, mixed-severity, Pinus ponderosa, wildfire.
Acknowledgements
The present research, as part of the Jasper Fire Monitoring Project, was funded through the Black Hills National Forest service agreement no. 0203–01–007 and the McIntire-Stennis program. We gratefully acknowledge our dedicated field-crews and volunteers who assisted in data collection and processing throughout the years. We also thank Blaine Cook of the Black Hills National Forest for his continued support and assistance throughout the present study and Rudy King for assistance with design and statistical analysis. Comments from two anonymous reviewers and associate editor greatly improved this manuscript.
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