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| 1 | An Approach to Extracting Fractal in Remote Sensing Image显示文摘In order to apply the spatial structure information to remote sensing interpretation through fractal theory, an algorithm is introduced to compute the single pixel fractal dimension in remote sensing images. After a computer program was written according to the algorithm, the ETM+ images were calculated to obtain their fractal data through the program. The algorithm has following characteristics: The obtained fractal values indicate the complexity of image, and have positive correlation with the complexity of images and ground objects. Moreover, the algorithm is simple and reliable, and easy to be implemented. | ZHU Ji LIN Ziyu WANG Angsheng CUI Peng | 2006 | Wuhan University Journal of Natural Sciences2006,11,3: | 3 |
| 2 | International Strategy of Disaster Reduction (ISDR) and Integrated Disaster Reduction in China | WANG Angsheng (Disaster Reduction Center, Chinese Academy of Sciences) | 2001 | Natural Disaster Reduction in China2001,,4: | 1 |
| 3 | Atmosphere-Watersphere Disaster Reduction System(AWDRS) | Wang Angsheng, Wang Jizhi *, Li Jishun Xu Naizhang, Liang Bijun, Dong Wenjie * * et al (The Center of Disaster Reduction, Chinese Academy of Sciences, Beijing 100029) (The Center of Meteorology, Chinese Meteorological Administration, Beijing 10008 | 1998 | Natural Disaster Reduction in China1998,,4: | 1 |
| 4 | Ecoenvironmental vulnerability evaluation in mountainous region using remote sensing and GIS-A case study in the upper reaches of Minjiang River,China显示文摘 | Li Ainong Wang Angsheng Liang Shunlin | 2006 | Ecological Modelling2006,192,: | 1 |
| 5 | Use of the advanced microwave sounding unit data to improve typhoon prediction显示文摘The effects of incorporating the advanced microwave sounding unit (AMSU-A) data with a modified Zhu-Zhang-Weng vortex- bogussing algorithm on typhoon prediction are examined through the use of the PSU/NCAR Mesoscale Model version 5 (MM5). The AMSU-A data contain the vertical distribution of the retrieved temperature from satellite brightness temperature, with the geopo- tential height and wind fields derived through a series of statistical and diagnostic calculations. The advantages of the modified vortex- bogussing algorithm include the incorporation of realistic asymmetric typhoon structures, the balanced dynamics with the background field, the easiness to implement and the effcient computations. To test the effciency of this vortex-bogussing algorithm, the Typhoon Dan event in 1999 is simulated by incorporating the derived AMSU-A fields into the initial conditions of the MM5 modeling system. Results show significant improvements in the track and intensity of the storm, as compared to the simulation without the AMSU-A data. Therefore, this modified vortex-bogussing algorithm can be easily implemented on any typhoon modeling system, which will improve the real-time forecast of tropical cyclones. | Guo Deng Dalin Zhang Tong Zhu Angsheng Wang | 2009 | Progress in Natural Science:Materials International2009,19,3: | 1 |
| 6 | Eco-environmental vulnerability evaluation in mountainous region using remote sensing and GIS-A case study in the upper reaches of Minjiang River,China显示文摘 | Li Ainong Wang Angsheng Liang Shunlin | 2006 | Ecological Modelling2006,,192: | 1 |
| 7 | Integrated Evaluation Model for Eco-Environmental Quality in Mountainous Region Based on Remote Sensing and GIS显示文摘Based on Remote Sensing (RS), Geographic Information System (GIS), and combining Principal Component Analysis, this paper designed a numerical integrated evaluation model for mountain eco-environment on the base of grid scale. Using this model, we evaluated the mountain eco-environmental quality in a case study area—the upper reaches of Minjiang River, and achieved a good result, which accorded well with the real condition. The study indicates that, the integrated evaluation model is suitable for multi-layer spatial factor computation, effectively lowing man’s subjective influence in the evaluation process; treating the whole river basin as a system, the model shows full respect to the circulation of material and energy, synthetically embodies the determining impact of such natural condition as water-heat and landform, as well as human interference in natural eco-system; the evaluation result not only clearly presents mountainous vertical distribution features of input factors, but also provides a scientific and reliable thought for quantitatively evaluating mountain eco-environment. | LI Ainong WANG Angsheng HE Xiaorong FENG Wenlan ZHOU Wancun | 2006 | Wuhan University Journal of Natural Sciences2006,11,4: | 1 |
| 8 | TYPHOON DISASTER AND ITS RISK ASSESSMENTIN CHINA | Wang zhuo Li Jishun and Wang Angsheng(Institute of Atmospheric Physics, Chinese Academy of Sciences, Beijing 100029) | 1996 | Natural Disaster Reduction in China1996,,4: | 1 |
| 9 | International Strategy for Disaster Reduction in China | WANG Angsheng (Disaster Reduction Center, Chinese Academy of Sciences, Beijing 100029) | 2000 | Natural Disaster Reduction in China2000,,4: | 1 |
| 10 | Atmospheric catastrophology显示文摘 | Wang Angsheng | 1991 | Advances in Earth Science1991,6,5: | 1 |
| 11 | Numerical Model and Simulating Technology of Severe Disasters | Dong Jiarui, Wang Angsheng, Liao Qinghai, Wang Zhuo and Feng Qiang (The Center of Disaster Reduction, Chinese Academy of Sciences, Beijing 100029) | 1998 | Natural Disaster Reduction in China1998,,4: | 0 |
| 12 | The Setting-up of the Synthetical Database for Disaster Reduction | One of the Achievements for China’s International Decade for Natural Disaster Reduction Liang Bijun, Chen Jiatian, Sun Shiyan, Tong Xu, Bai Wanru and Wang Angsheng (Institute of Atmospheric Physics, the Chinese Academy of Sciences, Beijing 100029) | 1998 | Natural Disaster Reduction in China1998,,4: | 0 |
| 13 | Study on Middle and Short Term Forecast and Asesment Technology on Atmosphere-Hydrosphere Disasters | Li Jishun,Wang Angsheng,Xu Naizhang,Yang Yi and Zheng Shuangzhi (Institute of Atmospheric Physics, Chinese Academy of Sciences, Beijing 100029) | 1998 | Natural Disaster Reduction in China1998,,4: | 0 |
| 14 | Disaster Mitigation Theory and Practice in China | Wang Angsheng (The Center of Disaster Reduction, Chinese Academy of Sciences, Beijing 100029) | 1999 | Natural Disaster Reduction in China1999,,4: | 0 |
| 15 | ADVANCE IN RAINSTORM WARNING SERVICE RESE ARCH | Wang Angsheng(Institute of Atmospheric Physics, Chinese Academy of Sciences)Liang Bijun(Institute of Telecommunication Planning, Ministry of Post and Telecommunication) Qin Xiangshi(National Meteorological Canter, China Meteorological Administration)Feng | 1996 | Natural Disaster Reduction in China1996,,3: | 0 |
| 16 | SPEECH ON THE INAUGURAL MEETING OF DISASTER REDUCTION CENTER OF CHINESE ACADEMY OF SIENCES | Wang Angsheng (Director of Disasier Reduction Center, Chinese Academy of Sciences ) | 1995 | Natural Disaster Reduction in China1995,,4: | 0 |
| 17 | APPLICATION OF CLOUD AND PRECIPITATION IN SCIENTIFIC SYSTEM ON NATURAL DISASTER REDUCTION | Wang Angsheng Liang Bijun Dong Jiarui Feng Qiang and Wang Zhou(Institute of Atmospheric Physics, Chinese Academy of Sciences, Beijing, China) | 1996 | Natural Disaster Reduction in China1996,,2: | 0 |
| 18 | A New Milestone to Global Disaster Reduction | WANG Angsheng (The Expert’s Group of CNCIDNDR) | 2000 | Natural Disaster Reduction in China2000,,2: | 0 |