Wildfire Ash Composition and Engineering Behavior

Author:

Wirth Xenia1,Antunez Vanessa2,Enriquez Dezire3,Arevalo Zuleyma4,Kanaan Ramzieh5

Affiliation:

1. Assistant Professor, Dept. of Civil and Environmental Engineering, CSU Fullerton, 800 N State College Blvd., Fullerton, CA 92831 (corresponding author).

2. Civil Engineering Associate 1, LADWP, 111 N Hope St., Los Angeles, CA 90012.

3. Undergraduate Research Assistant, Dept. of Civil and Environmental Engineering, CSU Fullerton, 800 N State College Blvd., Fullerton, CA 92831; presently, Staff Engineer, Southern California Geotechnical, Inc., Yorba Linda, CA 92887.

4. Undergraduate Research Assistant, Dept. of Civil and Environmental Engineering, CSU Fullerton, 800 N State College Blvd., Fullerton, CA 92831; presently, Field Soils Technician, GeoTek Consultants Office, 1548 N Maple St., Corona, CA 92880.

5. Staff Engineer, Group Delta, 32 Mauchly STE B, Irvine, CA 92618; presently, Field Soils Technician, GeoTek Consultants Office, 1548 N Maple St., Corona, CA 92880.

Publisher

American Society of Civil Engineers (ASCE)

Reference45 articles.

1. Araújo Santos L. S. Lopes and J. Silva. 2019. “Difficulties of using the Harvard miniature compaction apparatus as a reference test in the study of soil compaction.” In Proc. 17th European Conference on Soil Mechanics and Geotechnical Engineering. Lisbon Portugal: Portuguese Geotechnical Society.

2. Post-wildfire slope stability effects and mitigation: a case study from hilly terrains with unmanaged forest

3. The hydrological properties and the effects of hydration on vegetative ash from the Northern Rockies, USA

4. Wildland fire ash: Production, composition and eco-hydro-geomorphic effects

5. The wettability of ash from burned vegetation and its relationship to Mediterranean plant species type, burn severity and total organic carbon content

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