测绘通报 ›› 2019, Vol. 0 ›› Issue (3): 113-115,119.doi: 10.13474/j.cnki.11-2246.2019.0089
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LIU Jia
Received:
2018-04-24
Online:
2019-03-25
Published:
2019-04-02
CLC Number:
LIU Jia. A nowcasting method based on satellite remote sensing[J]. 测绘通报, 2019, 0(3): 113-115,119.
[1] HOUZE R A. Mesoscale convective systems[J]. Reviews of Geophysics, 2004, 42(4):1-43. [2] GAMACHE J F, HOUZE JR R A. Water budget of a mesoscale convective system in the tropics[J]. Journal of the Atmospheric Sciences, 1983, 40(7):1835-1850. [3] VAN W K, VOGELMANN A, LIN W, et al. The role of cloud microphysics parameterization in the simulation of mesoscale convective system clouds and precipitation in the Tropical Western Pacific[J]. Journal of the Atmospheric Sciences, 2013, 70(4):1104-1128. [4] LUO Y, GONG Y, ZHANG D L. Initiation and organizational modes of an extreme-rain-producing mesoscale convective system along a Mei-Yu Front in East China[J]. Monthly Weather Review, 2014, 142(1):203-221. [5] FAN L, YU X. Characteristic analyses on environmental parameters in short-term severe convective weather in China[J]. Plateau Meteorology, 2013, 32(1):156-165. [6] MELHAUSER C, ZHANG F. Practical and intrinsic predictability of severe and convective weather at the mesoscales[J]. Journal of the Atmospheric Sciences, 2012, 69(11):3350-3371. [7] SHUKLA B P, KISHTAWAL C M, PAL P K. Prediction of satellite image sequence for weather nowcasting using cluster-based spatiotemporal regression[J]. IEEE Transactions on Geoscience and Remote Sensing, 2014, 52(7):4155-4160. [8] ISAAC G A, JOE P, MAILHOT J, et al. Science of nowcasting olympic weather for Vancouver 2010(SNOW-V10):a world weather research programme project[J]. Pure and Applied Geophysics, 2014, 171(1-2):1-24. [9] MAKRIS A, PRIEUR C, VISCHEL T, et al. Stochastic tracking of mesoscale convective systems:evaluation in the West African Sahel[J]. Stochastic Environmental Research and Risk Assessment, 2016, 30(2):681-691. [10] VILA D A, MACHADO L A T, LAURENT H, et al. Forecast and tracking the evolution of cloud clusters (ForTraCC) using satellite infrared imagery:methodology and validation[J]. Weather and Forecasting, 2008, 23(2):233-245. [11] 曹春燕,陈元昭,刘东华,等.光流法及其在临近预报中的应用[J].气象学报,2015,73(3):471-480. [12] 李佰平,戴建华,张欣,等.三类强对流天气临近预报的模糊检验试验与对比[J].气象,2016,42(2):129-143. [13] 行鸿彦,张强,季鑫源.基于地面电场资料的雷暴临近预报研究[J].大气科学学报,2017,40(1):111-117. [14] LIU J, MA C, LIU C C, et al. An extended maxima transform-based region growing algorithm for convective cell detection on satellite images[J]. Remote Sensing Letters, 2014, 5(11), 971-980. [15] HAN L, FU S, ZHAO L, et al. 3D convective storm identification, tracking, and forecasting-an enhanced TITAN algorithm[J]. Journal of atmospheric and oceanic technology, 2009, 26(4):719-732. |
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