Chinese Journal of Computational Physics ›› 2024, Vol. 41 ›› Issue (6): 797-803.DOI: 10.19596/j.cnki.1001-246x.8985
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Liuxing HUANG1(), Jun ZHUO1,2, Yaqi LI1, Shengli NIU1,2, Yanjun FU1,2, Xiazhi LI1,2, Jinhui ZHU1,2, Jinlin NIU1,2
Received:
2024-07-11
Online:
2024-11-25
Published:
2024-12-26
Liuxing HUANG, Jun ZHUO, Yaqi LI, Shengli NIU, Yanjun FU, Xiazhi LI, Jinhui ZHU, Jinlin NIU. Progress in Numerical Simulation of Radioactive Fallout with Complex Conditions[J]. Chinese Journal of Computational Physics, 2024, 41(6): 797-803.
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URL: http://www.cjcp.org.cn/EN/10.19596/j.cnki.1001-246x.8985
Fig.4 Radioactive contamination distribution under different rainfall intensity (a) rainfall intensity of 1 mm ·h-1; (b) rainfall intensity of 10 mm ·h-1
1 |
|
2 |
王建国, 刘利, 牛胜利, 等. 高空核爆炸环境数值模拟[J]. 现代应用物理, 2023, 14 (1): 1- 12.
|
3 |
乔登江. 核爆炸物理概论[M]. 北京: 原子能出版社, 1988: 9- 10.
|
4 |
HOWARD A H. Compilation of local fallout data from test detonations 1945-1962 extracted from DASA 1251. Volume Ⅱ-Oceanic U.S. Tests[R/OL]. 1979(1979-05-01) [2024-06-30]. https://www.osti.gov/biblio/5009084.
|
5 |
LEE H, WONG P W, BROWN S L. SEER Ⅱ: a new damage assessment fallout model[R/OL]. 1972(1972-05-01) [2024-06-30]. https://www.osti.gov/biblio/4478447.
|
6 |
PUGH G E, GALIANO R J. An analytic model of close-in deposition of fallout for use in operational type studies[R]. 1959(1959-10-15). https://www.osti.gov/biblio/6640821.
|
7 |
NORMENT H G. Delfic: Department of defense fallout prediction system volume Ⅰ-Fundamentals[R]. 1979(1979-12-31) [2024-06-30]. https://www.osti.gov/biblio/6606853.
|
8 |
DOI |
9 |
SCHOFIELD J C. Mapping nuclear fallout using the weather research and forecasting(WRF)model[D]. Baltimore: Air Force Institue of Technology, 2012.
|
10 |
MILLER A D. A comparison in the accuracy of mapping nuclear fallout patterns using HPAC, HYSPLIT, DELFIC FPT and an AFIT fortran95 fallout deposition code[D]. Ohio: The Air Force Air University, 2011.
|
11 |
张彦, 郑毅, 王自发. 基于RAMS/CFORS Ⅱ模式一次低空核试验放射性烟云扩散的数值模拟[J]. 气候与环境研究, 2008, 13 (6): 717- 726.
|
12 |
DOI |
13 |
DOI |
14 |
袁竹林, 朱立平, 耿凡. 气固两相流动与数值模拟[M]. 南京: 东南大学出版社, 2013: 22- 25.
|
15 |
|
16 |
卓俊, 黄流兴, 牛胜利, 等. 湍流边界层中颗粒物扩散的双拉格朗日模拟计算[J]. 现代应用物理, 2016, 7 (3): 63- 68.
|
17 |
DAVIS N C. Particle size determination from local fallout[D]. Ohio: Air Force Institute of Technology, 1986.
|
18 |
HEFT R E. Characterization of radioactive particles from nuclear weapons tests[R/OL]. 1970(1970-01-01)[2024-07-01]. https://www.osti.gov/biblio/4689911.
|
19 |
DOI |
20 |
DOI |
21 |
SLINN W G N. Precipitation scavenging[C]//RADERSON D. Atmospheric Sciences and and Power Production-1979, 1983.
|
22 |
DOI |
23 |
田飞, 伯鑫, 薛晓达, 等. 基于复杂地形-气象场的二噁英污染物沉降研究[J]. 中国环境科学, 2019, 39 (4): 1678- 1686.
|
24 |
DOI |
25 |
DOI |
26 |
WILLIAM C, JOSEPH B, JIMY D, et al. A description of the advanced research WRF model version 4[EB/OL]. 2021(2021-07-20)[2024-07-01]. https://opensky.ucar.edu/islandora/object/opensky:2898.
|
27 |
|
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