林业研究(英文版) ›› 2023, Vol. 34 ›› Issue (2): 373-386.DOI: 10.1007/s11676-022-01504-2
Roghayeh Jahdi1,2(), Liliana Del Giudice1,b(
), Massimo Melis3, Raffaella Lovreglio4, Michele Salis1(
), Bachisio Arca1(
), Pierpaolo Duce1
收稿日期:
2021-12-30
接受日期:
2022-04-19
出版日期:
2024-10-16
发布日期:
2024-10-16
通讯作者:
Liliana Del Giudice
Roghayeh Jahdi1,2(), Liliana Del Giudice1,b(
), Massimo Melis3, Raffaella Lovreglio4, Michele Salis1(
), Bachisio Arca1(
), Pierpaolo Duce1
Received:
2021-12-30
Accepted:
2022-04-19
Online:
2024-10-16
Published:
2024-10-16
Contact:
Liliana Del Giudice
Roghayeh Jahdi, Liliana Del Giudice, Massimo Melis, Raffaella Lovreglio, Michele Salis, Bachisio Arca, Pierpaolo Duce. [J]. 林业研究(英文版), 2023, 34(2): 373-386.
Roghayeh Jahdi, Liliana Del Giudice, Massimo Melis, Raffaella Lovreglio, Michele Salis, Bachisio Arca, Pierpaolo Duce. Assessing the effects of alternative fuel treatments to reduce wildfire exposure[J]. JOURNAL OF FORESTRY RESEARCH, 2023, 34(2): 373-386.
1 |
DOI |
2 |
DOI |
3 |
DOI |
4 |
DOI |
5 |
Albini FA (1979) Spot fire distance from burning trees: a predictive model (Vol. 56). Intermountain Forest and Range Experiment Station, Forest Service, US Department of Agriculture.
|
6 |
DOI |
7 |
DOI |
8 |
DOI |
9 |
DOI |
10 |
DOI |
11 |
Anderson HE (1982) Aids to determining fuel models for estimating fire behaviour. US Department of Agriculture, Forest Service General Technical Report INT-122 https://doi.org/10.2737/INT-GTR-122
|
12 |
Andrews PL, Heinsch FA, Schelvan L (2011) How to generate and interpret fire characteristics charts for surface and crown fire behavior (No. 253). US Department of Agriculture, Forest Service, Rocky Mountain Research Station. https://doi.org/10.2737/RMRS-GTR-253
|
13 |
|
14 |
|
15 |
DOI |
16 |
DOI |
17 |
DOI |
18 |
Calkin DE, Ager AA, Thompson MP (2011) A comparative risk assessment framework for wildland fire management: The 2010 Cohesive Strategy Science Report, Gen. Tech Rep RMRS-GTR-262 Fort Collins, CO https://doi.org/10.2737/RMRS-GTR-262
|
19 |
DOI |
20 |
|
21 |
DOI |
22 |
DOI |
23 |
DOI |
24 |
DOI |
25 |
DOI |
26 |
DOI |
27 |
|
28 |
DOI |
29 |
DOI |
30 |
DOI |
31 |
Finney MA (1998) FARSITE: Fire Area Simulator–model development and evaluation. Research Paper RMRS-RP-4 Revised. Ogden, UT: U.S. Department of Agriculture, Forest Service, Rocky Mountain Research Station. p 47 https://doi.org/10.2737/RMRS-RP-4
|
32 |
Finney MA (2006) An overview of FlamMap fire modelling capabilities. In: Andrews, P.L., Butler, B.W. (Eds.), Fuels Management-How to Measure Success. US Department of Agriculture, Forest Service, Proceedings RMRS-P-41, pp. 213–220.
|
33 |
DOI |
34 |
DOI |
35 |
DOI |
36 |
DOI |
37 |
DOI |
38 |
DOI |
39 |
DOI |
40 |
DOI |
41 |
DOI |
42 |
|
43 |
DOI |
44 |
DOI |
45 |
DOI |
46 |
DOI |
47 |
DOI |
48 |
DOI |
49 |
DOI |
50 |
DOI |
51 |
DOI |
52 |
DOI |
53 |
DOI |
54 |
Parisien MA, Kafka VG, Hirsch KG, Todd JB, Lavoie SG, Maczek PD (2005) Mapping wildfire susceptibility with the BURN-P3 simulation model. Natural Resources Canada, Canadian Forest Service, Northern Forestry Centre, Edmonton, Alberta. Information Report NOR-X-405, p 36
|
55 |
DOI |
56 |
Pellizzaro G, Ventura A, Zara P (2005) Influence of seasonal weather variations on fuel status for some shrubs typical of Mediterranean Basin. In: Proceeding’s 6th Fire and Forest Meteorology Symposium and 19th Interior West Fire Council Meeting, 24e27 Canmore, AB, Canada
|
57 |
Peratoner G, Vitalone L, Pramsohler M, Kasal A (2017) Effect of irrigation and N fertilization on the botanical composition of mountain meadows. Grassland Science in Europe, Vol. 22 – Grassland resources for extensive farming systems in marginal lands: major drivers and future scenarios. Proceedings of the 19th Symposium of the European Grassland Federation Alghero, Italy 7–10 681.
|
58 |
Pinto A, Fernandes PM, Loureiro C (2014) Prescribed burning guide for Blue Gum plantations. GIFF SA/University of Trás-os-Montes and Alto Douro. Vila Real, Portugal. https://doi.org/10.13140/2.1.3313.5688.
|
59 |
|
60 |
Rothermel RC (1972) A mathematical model for predicting fire spread in wildland fuels. Res. Pap. INT-115. Ogden, UT: U.S. Department of Agriculture, Intermountain Forest and Range Experiment Station. 40 p. https://www.fs.usda.gov/treesearch/pubs/32533
|
61 |
Rothermel RC (1991) Predicting behaviour and size of crown fires in the northern rocky mountains. Res. Pap. INT-RP-438. Ogden, UT: U.S. Department of Agriculture, Forest Service, Intermountain Research Station. 46 p. https://doi.org/10.2737/INT-RP-438
|
62 |
DOI |
63 |
DOI |
64 |
DOI |
65 |
DOI |
66 |
DOI |
67 |
DOI |
68 |
DOI |
69 |
Scott JH, Burgan R (2005) Standard fire behaviour fuel models: a comprehensive set for use with Rothermel’s surface fire spread model. Gen. Tech. Rep. RMRS-GTR-153. Fort Collins, CO: U.S. Department of Agriculture, Forest Service, Rocky Mountain Research Station. 72 p. https://doi.org/10.2737/RMRS-GTR-153
|
70 |
Scott JH, Reinhardt ED (2001) Assessing crown fire potential by linking models of surface and crown fire behaviour. Res. Pap. RMRS-RP-29. Fort Collins, CO: U.S. Department of Agriculture, Forest Service, Rocky Mountain Research Station. 59 https://doi.org/10.2737/RMRS-RP-29
|
71 |
DOI |
72 |
DOI |
73 |
DOI |
74 |
DOI |
75 |
DOI |
76 |
DOI |
No related articles found! |
阅读次数 | ||||||
全文 |
|
|||||
摘要 |
|
|||||