[1] |
张秋晨, 龚佃利, 王俊, 等. 基于地基微波辐射计反演的济南地区水汽及云液态水特征[J]. 气象与环境学报, 2017, 33(5):35-43.
|
|
[ Zhang Qiuchen, Gong Dianli, Wang Jun, et al. Characteristics of water vapor and liquid water content retrieved by ground-based microwave radiometer in Ji’nan[J]. Journal of Meteorology and Environment, 2017, 33(5):35-43. ]
|
[2] |
巩宁刚, 孙美平, 闫露霞, 等. 1979—2016年祁连山地区大气水汽含量时空特征及其与降水的关系[J]. 干旱区地理, 2017, 40(4):762-771.
|
|
[ Gong Ninggang, Sun Meiping, Yan Luxia, et al. Temporal and spatial characteristics of atmospheric water vapor and its relations with precipitation in Qilian Mountains during 1979—2016[J]. Arid Land Geography, 2017, 40(4):762-771. ]
|
[3] |
张文刚, 徐桂荣, 万蓉, 等. 基于地基微波辐射计的大气液态水及水汽特征分析[J]. 暴雨灾害, 2015, 34(4):367-374.
|
|
[ Zhang Wengang, Xu Guirong, Wan Rong, et al. Analysis of the characteristic of liquid water and water vapor detected by ground-based microwave radiometer[J]. Torrential Rain and Disasters, 2015, 34(4):367-374. ]
|
[4] |
李军霞, 李培仁, 晋立军, 等. 地基微波辐射计在遥测大气水汽特征及降水分析中的应用[J]. 干旱气象, 2017, 33(5):61-69.
|
|
[ Li Junxia, Li Peiren, Jin Lijun, et al. Remote sensing of precipitable water vapor features and application in precipitation analysis by using ground-based microwave radiometer[J]. Journal of Arid Meteorology, 2017, 33(5):61-69. ]
|
[5] |
Cossu F, Hocke K, Martynov A, et al. Atmospheric water parameters measured by a ground-based microwave radiometer and compared with the WRF model[J]. Atmospheric Science Letters, 2015, 16(4):465-472.
doi: 10.1002/asl.2015.16.issue-4
|
[6] |
Steinke S, Lohnert U, Crewell S, et al. Water vapor tomography with two microwave radiometers[J]. IEEE Geoscience and Remote Sensing Letters, 2014, 11(2):419-423.
doi: 10.1109/LGRS.8859
|
[7] |
Navas-Guzmán F, Kämpfer N, Schranz F, et al. Intercomparison of stratospheric temperature profiles from a ground-based microwave radiometer with other techniques[J]. Atmospheric Chemistry & Physics, 2017, 17(22):1-28.
|
[8] |
He J Y, Sun F L, Zhang S W, et al. The analysis of atmospheric water vapor based on ground-based microwave radiometer[J]. Key Engineering Materials, 2012, 500:335-340.
doi: 10.4028/www.scientific.net/KEM.500
|
[9] |
Liu S, Heygster G, Zhang S. Comparison of CloudSat cloud liquid water paths in arctic summer using ground-based microwave radiometer[J]. Journal of Ocean University of China, 2010, 9(4):333-342.
doi: 10.1007/s11802-010-1740-y
|
[10] |
刘建忠, 何晖, 张蔷. 不同时次地基微波辐射计反演产品评估[J]. 气象科技, 2012, 40(3):332-339.
|
|
[ Liu Jianzhong, He Hui, Zhang Qiang. Evaluation and analysis of retrieval products of ground-based microwave radiometers at different times[J]. Meteorological Science and Technology, 2012, 40(3):332-339. ]
|
[11] |
Xu W J, Liu H Y. Ground-based microwave radiometer profiler observations before a heavy rainfall[J]. Applied Mechanics and Materials, 2011, 137:312-315.
doi: 10.4028/www.scientific.net/AMM.137
|
[12] |
陈添宇, 陈乾, 丁瑞津. 地基微波辐射仪监测的张掖大气水汽含量与雨强的关系[J]. 干旱区地理, 2007, 30(4):501-506.
|
|
[ Chen Tianyu, Chen Qian, Ding Ruijin. Relationship between atmospheric vapor content monitored by ground-based microwave radiometer and rain intensity in Zhangye Prefecture[J]. Arid Land Geography, 2007, 30(4):501-506. ]
|
[13] |
敖雪, 王振会, 徐桂荣, 等. 地基微波辐射计资料在降水分析中的应用[J]. 暴雨灾害, 2011, 30(4):358-365.
|
|
[ Ao Xue, Wang Zhenhui, Xu Guirong, et al. Application of microwave radiometer data in precipitation analysis[J]. Torrential Rain and Disasters, 2011, 30(4):358-365. ]
|
[14] |
孙艳桥, 汤达章, 桑建人, 等. RPG_HATPRO_G4型地基微波辐射计温度数据质量控制方法与效果分析[J]. 干旱区地理, 2019, 42(6):1282-1290.
|
|
[ Sun Yanqiao, Tang Dazhang, Sang Jianren, et al. Quality control method and efficiency analysis on temperature data by RPG_HATPRO_G4 type ground-based microwave radiometer[J]. Arid Land Geography, 2019, 42(6):1282-1290. ]
|
[15] |
田磊, 桑建人, 姚展予, 等. 六盘山区夏秋季大气水汽和液态水特征初步分析[J]. 气象与环境学报, 2019, 35(6):28-37.
|
|
[ Tian Lei, Sang Jianren, Yao Zhanyu, et al. Characteristics of atmospheric water vapor and liquid water in Liupan Mountain area in summer and autumn[J]. Journal of Meteorology and Environment, 2019, 35(6):28-37. ]
|
[16] |
徐桂荣, 孙振添, 李武阶, 等. 地基微波辐射计与GPS无线电探空和GPS/MET的观测对比分析[J]. 暴雨灾害, 2010, 29(4):315-321.
|
|
[ Xu Guirong, Sun Zhentian, Li Wujie, et al. Observational comparison among microwave water radiometer, GPS radiosonde and GPS/MET[J]. Torrential Rain and Disasters, 2010, 29(4):315-321. ]
|
[17] |
刘建忠, 张蔷. 微波辐射计反演产品评价[J]. 气象科技, 2010, 38(3):325-331.
|
|
[ Liu Jianzhong, Zhang Qiang. Evaluation and analysis of retrieval products of ground-based microwave radiometer[J]. Meteorological Science and Technology, 2010, 38(3):325-331. ]
|
[18] |
刘红燕. 三年地基微波辐射计观测温度廓线的精度分析[J]. 气象学报, 2011, 69(4):719-728.
|
|
[ Liu Hongyan. The temperature profile comparison between the ground-based microwave radiometer and the other instrument for the recent three years[J]. Acta Meteorologica Sinica, 2011, 69(4):719-728. ]
|
[19] |
赵玲, 马玉芬, 张广兴, 等. MP-3000A微波辐射计的探测原理及误差分析[J]. 沙漠与绿洲气象, 2009, 3(5):53-57.
|
|
[ Zhao Ling, Ma Yufen, Zhang Guangxing, et al. The principle and error analysis of microwave radiometer MP-3000A[J]. Desert and Oasis Meteorology, 2009, 3(5):53-57. ]
|
[20] |
王凯, 孙美平, 巩宁刚. 西北地区大气水汽含量时空分布及其输送研究[J]. 干旱区地理, 2018, 41(2):73-80.
|
|
[ Wang Kai, Sun Meiping, Gong Ninggang. Spatial and temporal distribution and transport of atmospheric water vapor in northwest China[J]. Arid Land Geography, 2018, 41(2):73-80. ]
|
[21] |
刘洁遥, 张福平, 冯起, 等. 陕甘宁地区降水稳定同位素特征及水汽来源[J]. 应用生态学报, 2019, 30(7):2191-2200.
|
|
[ Liu Jieyao, Zhang Fuping, Feng Qi, et al. Stable isotope characteristics of precipitation and sources of water vapor in Shaanxi-Gansu-Ningxia region[J]. Chinese Journal of Applied Ecology, 2019, 30(7):2191-2200. ]
|
[22] |
孙艺杰, 刘宪锋, 任志远, 等. 1960—2016年黄土高原多尺度干旱特征及影响因素[J]. 地理研究, 2019, 38(7):1820-1832.
doi: 10.11821/dlyj020190088
|
|
[ Sun Yijie, Liu Xianfeng, Ren Zhiyuan, et al. Spatiotemporal variations of multi-scale drought and its influencing factors across the Loess Plateau from 1960 to 2016[J]. Geographical Research, 2019, 38(7):1820-1832. ]
doi: 10.11821/dlyj020190088
|
[23] |
常倬林, 崔洋, 张武, 等. 基于CERES的宁夏空中云水资源特征及其增雨潜力研究[J]. 干旱区地理, 2015, 38(6):175-188.
|
|
[ Chang Zhuolin, Cui Yang, Zhang Wu, et al. Characteristics and developing potential of cloud water resource in Ningxia with the CERES data[J]. Arid Land Geography, 2015, 38(6):175-188. ]
|
[24] |
黄建平, 何敏, 阎虹如, 等. 利用地基微波辐射计反演兰州地区液态云水路径和可降水量的初步研究[J]. 大气科学, 2010(3):548-558.
|
|
[ Huang Jianping, He Min, Yan Hongru, et al. A study of liquid water path and precipitable water vapor in Lanzhou area using ground-based microwave radiometer[J]. Chinese Journal of Atmospheric Sciences, 2010(3):548-558. ]
|