Forest and Grassland Resources Research ›› 2024›› Issue (5): 128-137.doi: 10.13466/j.cnki.lczyyj.2024.05.014
• Technical Application • Previous Articles Next Articles
WANG Ao1(
), WANG Chenghu1,2(
), GAO Guiyun1,2, WANG Mingyu3,4, SU Haiyan1, WU Ningyu1
Received:2024-06-15
Revised:2024-09-15
Online:2024-10-28
Published:2025-04-18
CLC Number:
WANG Ao, WANG Chenghu, GAO Guiyun, WANG Mingyu, SU Haiyan, WU Ningyu. Simulation of Canyon Wind Field and Forest Fire Spread Based on WindNinja Model[J]. Forest and Grassland Resources Research, 2024, (5): 128-137.
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URL: https://www.lyzygl.com.cn/EN/10.13466/j.cnki.lczyyj.2024.05.014
Tab.2
Comparison of simulation accuracy of different wind fields
| 日期 | 时间 | 风场 | 重合区面积/km2 | 过模拟区面积/km2 | 未模拟面积/km2 | SC系数 |
|---|---|---|---|---|---|---|
| 2020-03-29 | 19:00 | 地表平均风场 | 59.79 | 18.52 | 6.13 | 0.83 |
| WindNinja模拟风场 | 61.99 | 4.37 | 3.94 | 0.94 | ||
| 2020-03-30 | 19:00 | 地表平均风场 | 86.36 | 58.97 | 10.83 | 0.71 |
| WindNinja模拟风场 | 85.66 | 35.82 | 11.56 | 0.78 | ||
| 2020-04-01 | 19:00 | 地表平均风场 | 78.48 | 203.65 | 22.46 | 0.40 |
| WindNinja模拟风场 | 79.74 | 177.55 | 21.20 | 0.44 |
| [1] | JAHDI R, DARVISHSEFAT A A, ETEMAD V, et al. Wind effect on wildfire and simulation of its spread(case study:Siahkal forest in Northern Iran)[J]. Journal of Agricultural Science and Technology, 2014, 16(5):1109-1121. |
| [2] | 龙腾腾, 向临川, 王儒龙, 等. 西南高山峡谷地区森林火灾事故研究[J]. 森林防火, 2020(4):21-23. |
| [3] | 康庆江. 林火蔓延研究进展[J]. 林业勘查设计, 2022, 51(3):27-32. |
| [4] | 蔡卫红, 王晓红, 于宏洲, 等. 基于Rothermel模型的可燃物参数对林火行为影响的计算机仿真[J]. 中南林业科技大学学报, 2013, 33(11):34-41. |
| [5] | 王正非. 山火初始蔓延速度测算法[J]. 山地研究1983, 1(2):42-51. |
| [6] | 王晓红, 王千雪, 于宏影, 等. FARSITE模型原理、结构及其在林火行为模拟中的应用[J]. 温带林业研究, 2022, 5(4):55-60. |
| [7] |
姚艳霞, 苗双喜, 黄旭, 等. 耦合Rothermel模型与粒子系统的林火蔓延模拟方法[J]. 测绘通报, 2022(8):75-80.
doi: 10.13474/j.cnki.11-2246.2022.0235 |
| [8] | 姜波, 陈涛, 张立凡, 等. 基于遥感解译的森林火灾蔓延模型研究[J]. 中国应急救援, 2021(3):11-16. |
| [9] | 赵亮, 刘鹏举, 周宇飞, 等. 复杂地形下风场插值与林火蔓延模拟应用研究[J]. 北京林业大学学报, 2010, 32(4):12-16. |
| [10] | 李春梅, 孟庆祥, 崔卫红. 基于WRF模式研究动态风场对林火蔓延预测的影响:以西昌“3·30”森林火灾为例[J]. 科学技术与工程, 2023, 23(11):4579-4585. |
| [11] | LINN R, WINTERKAMP J, EDMINSTER C, et al. Coupled influences of topography and wind on wildland fire behaviour[J]. International Journal of Wildland Fire, 2007, 16(2):183-195. |
| [12] | OZAKI M, HARRIS R M B, LOVE P T, et al. Impact of vertical atmospheric structure on an atypical fire in a mountain valley[J]. Fire-Switzerland, 2022, 5(4):104. |
| [13] | FORTHOFER J M, BUTLER B W, WAGENBRENNER N S. A comparison of three approaches for simulating fine-scale surface winds in support of wildland fire management.Part I.Model formulation and comparison against measurements[J]. International Journal of Wildland Fire, 2014, 23(7):969-981. |
| [14] | SIBANDA C, HUSSIN Y A, WEIR M, et al. Modelling forest fire behabiour and mapping carbon emission in the Ludikhola watershed,Gorkha district,Nepal[C]// Asian conference on remote sensing,Chelesile Sibanda,February, 2011. |
| [15] | SANJUAN G, BRUN C, MARGALEF T, et al. Determining map partitioning to accelerate wind field calculation[C]// 2014 International conference on high performance computing & simulation,Bologna,Italy, 2014. |
| [16] | 李兵, 周剑, 卜俊伟, 等. 木里县森林火灾原因分析及闪电监测资料应用[J]. 灾害学, 2021, 36(3):125-130. |
| [17] | 张志强, 殷继艳. 西南高山林区森林火灾风险评价研究[J]. 中国应急救援, 2021(5):30-35. |
| [18] | 唐尧, 王立娟, 赵娟, 等. 基于遥感技术的“3·28”四川木里森林火灾应急灾情监测[J]. 国土资源信息化, 2021(1):12-18. |
| [19] | LIU Liangyun. GLC_FCS30D:1985—2022年全球30米精细土地覆盖动态监测数据集,可持续发展大数据国际研究中心[EB/OL].(2023-05-09)[2024-05-15]. https://data.casearth.cn/dataset/6523adf6819aec0c3a438252. |
| [20] | FORTHOFER J M, BUTLER B W, MCHUGH C W, et al. A comparison of three approaches for simulating fine-scale surface winds in support of wildland fire management.Part II.An exploratory study of the effect of simulated winds on fire growth simulations[J]. International Journal of Wildland Fire, 2014, 23(7):982-994. |
| [21] | WAGENBRENNER N S, FORTHOFER J M, PAGE W G, et al. Development and evaluation of a reynolds-averaged navier-stokes solver in WindNinja for operational wildland fire applications[J]. Atmosphere, 2019, 10(11):1-27. |
| [22] | HAO Yujia. California Wildfire spread prediction using FARSITE and the comparison with the actual wildfire maps using statistical methods[D]. Los Angeles: University of California, 2018. |
| [23] | ARCA B, DUCE P, LACONI M, et al. Evaluation of FARSITE simulator in Mediterranean maquis[J]. International Journal of Wildland Fire, 2007, 16(5):563-572. |
| [24] | ARROYO L A, PASCUAL C, MANZANERA J A. Fire models and methods to map fuel types:The role of remote sensing[J]. Forest Ecology and Management, 2008, 256(6):1239-1252. |
| [25] | GIOVANNINI L, ZARDI D, DE FRANCESCHIA M, et al. Numerical simulations of boundary-layer processes and urban-induced alterations in an Alpine valley[J]. International Journal of Climatology, 2014, 34(4):1111-1131. |
| [26] | 赵璠, 舒立福, 周汝良, 等. 西南林区森林火灾火行为模拟模型评价[J]. 应用生态学报, 2017, 28(10):3144-3154. |
| [27] | VANELLA M, MCGRATTAN K, MCDERMOTT R, et al. A multi-fidelity framework for wildland fire behavior simulations over complex terrain[J]. Atmosphere, 2021, 12(2):273. |
| [28] | LOPES A M G. WindStation:A software for the simulation of atmospheric flows over complex topography[J]. Environmental Modelling & Software, 2003, 18(1):81-96. |
| [29] | 吴志伟, 贺红士, 胡远满, 等. FARSITE火行为模型的原理、结构及其应用[J]. 生态学杂志, 2012, 31(2):494-500. |
| [30] | FERNANDES P M. Combining forest structure data and fuel modelling to classify fire hazard in Portugal[J]. Annals of Forest Science, 2009, 66(4):4151-4159. |
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