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Development and Initial Assessment of a New Land Index for Microwave Humidity Sounder Cloud Detection 被引量:1
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作者 秦正坤 邹晓蕾 《Journal of Meteorological Research》 SCIE CSCD 2016年第1期12-37,共26页
This paper describes a new quality control (QC) scheme for microwave humidity sounder (MHS) data assimilation. It consists of a cloud detection step and an O-B (i.e., differences of brightness temperatures betwee... This paper describes a new quality control (QC) scheme for microwave humidity sounder (MHS) data assimilation. It consists of a cloud detection step and an O-B (i.e., differences of brightness temperatures between observations and model simulations) check. Over ocean, cloud detection can be carried out based on two MHS window channels and two Advanced Microwave Sounding Unit-A (AMSU-A) window channels, which can be used for obtaining cloud ice water path (IWP) and liquid water path (LWP), respectively. Over land, cloud detection of microwave data becomes much more challenging due to a much larger emission contribution from land surface than that from cloud. The current MHS cloud detection over land employs an 0-]3 based method, which could fail to identify cloudy radiances when there is mismatch between actual clouds and model clouds. In this study, a new MHS observation based index is developed for identifying MHS cloudy radiances over land. The new land index for cloud detection exploits the large variability of brightness temperature observations among MHS channels over different clouds, It is shown that those MHS cloudy radiances that were otherwise missed by the current O-B based QC method can be successfully identified by the new land index. An O-B check can then be employed to the remaining data after cloud detection to remove additional outliers with model simulations deviated greatly from observations. It is shown that MHS channel correlations are significantly reduced by the newly proposed QC scheme. 展开更多
关键词 microwave humidity sounder cloud detection data assimilation
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Estimating the Correlated Observation-Error Characteristics of the Chinese FengYun Microwave Temperature Sounder and Microwave Humidity Sounder
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作者 Ting WANG Jianfang FEI +2 位作者 Xiaoping CHENG Xiaogang HUANG Jian ZHONG 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2018年第11期1428-1441,共14页
In operational data assimilation systems, observation-error covariance matrices are commonly assumed to be diagonal.However, inter-channel and spatial observation-error correlations are inevitable for satellite radian... In operational data assimilation systems, observation-error covariance matrices are commonly assumed to be diagonal.However, inter-channel and spatial observation-error correlations are inevitable for satellite radiances. The observation errors of the Microwave Temperature Sounder(MWTS) and Microwave Humidity Sounder(MWHS) onboard the FengYun-3A(FY-3A) and FY-3B satellites are empirically assigned and considered to be uncorrelated when they are assimilated into the WRF model's Community Variational Data Assimilation System(WRFDA). To assimilate MWTS and MWHS measurements optimally, a good characterization of their observation errors is necessary. In this study, background and analysis residuals were used to diagnose the correlated observation-error characteristics of the MWTS and MWHS. It was found that the error standard deviations of the MWTS and MWHS were less than the values used in the WRFDA. MWTS had small inter-channel errors, while MWHS had significant inter-channel errors. The horizontal correlation length scales of MWTS and MWHS were about 120 and 60 km, respectively. A comparison between the diagnosis for instruments onboard the two satellites showed that the observation-error characteristics of the MWTS or MWHS were different when they were onboard different satellites. In addition, it was found that the error statistics were dependent on latitude and scan positions.The forecast experiments showed that using a modified thinning scheme based on diagnosed statistics can improve forecast accuracy. 展开更多
关键词 data assimilation CORRELATED OBSERVATION ERRORS MWTS(microwave TEMPERATURE sounder) MWHS(microwave humidity sounder)
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Assimilation of Feng-Yun-3B Satellite Microwave Humidity Sounder Data over Land 被引量:6
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作者 Keyi CHEN Niels BORMANN +1 位作者 Stephen ENGLISH Jiang ZHU 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2018年第3期268-275,共8页
The ECMWF has been assimilating Feng-Yun-3B (FY-3B) satellite microwave humidity sounder (MWHS) data over ocean in an operational forecasting system since 24 September 2014, It is more difficult, however, to assim... The ECMWF has been assimilating Feng-Yun-3B (FY-3B) satellite microwave humidity sounder (MWHS) data over ocean in an operational forecasting system since 24 September 2014, It is more difficult, however, to assimilate microwave observations over land and sea ice than over the open ocean due to higher uncertainties in land surface temperature, surface emissivity and less effective cloud screening. We compare approaches in which the emissivity is retrieved dynamically from MWHS channel l [150 GHz (vertical polarization)] with the use of an evolving emissivity atlas from 89 GHz observations from the MWHS onboard NOAA and EUMETSAT satellites. The assimilation of the additional data over land improves the fit of short-range forecasts to other observations, notably ATMS (Advanced Technology Microwave Sounder) humidity channels, and the forecast impacts are mainly neutral to slightly positive over the first five days. The forecast impacts are better in boreal summer and the Southern Hemisphere. These results suggest that the techniques tested allow for effective assimilation of MWHS/FY-3B data over land. 展开更多
关键词 data assimilation over land Chinese satellite FY-3B microwave humidity sounder
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风云三号C星微波湿度计资料全天候同化对台风玛莉亚预报的影响
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作者 陈贞璇 陈科艺 +1 位作者 希爽 冼智鹏 《大气科学》 CSCD 北大核心 2024年第4期1457-1477,共21页
随着风云三号系列卫星的成功发射,越来越多的卫星微波直接观测资料应用于数值天气预报的资料同化系统。并且由于卫星微波全天候同化技术可以充分利用晴天及云雨区微波观测资料,在增加同化使用的观测数据的基础上,有效提高数值天气预报... 随着风云三号系列卫星的成功发射,越来越多的卫星微波直接观测资料应用于数值天气预报的资料同化系统。并且由于卫星微波全天候同化技术可以充分利用晴天及云雨区微波观测资料,在增加同化使用的观测数据的基础上,有效提高数值天气预报准确率,该技术在卫星资料同化领域也颇受瞩目。本研究选取2018年7月的台风玛莉亚,利用WRF(Weather Research and Forecasting)模式及其同化系统WRFDA(WRF Data Assimilation)中三维变分方法,探讨风云三号C星微波湿度计观测资料的全天候同化技术在区域模式中的适用性,以及其在不同模式驱动场中的预报表现。通过对比仅同化晴空区域卫星资料的试验和全天候同化的试验结果发现,全天候条件下更多的云雨区域观测资料被有效利用,能够更好地模拟出台风玛莉亚核心区域的暖心和对称风速结构,有效改善湿度场的预报,对台风路径的预报误差平均降低了大约34%~62%,且这种正面影响均能在不同模式驱动场中得到体现。 展开更多
关键词 风云三号C星 微波湿度计 全天候同化 台风预报
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RTTOV散射模块在FY-3MWHS资料同化中的应用 被引量:5
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作者 苏捷 朱克云 张杰 《气象》 CSCD 北大核心 2013年第11期1461-1472,共12页
一直以来,受同化系统中观测算子的限制,云区的卫星微波观测资料在使用时都常会做晴空假设,只考虑大气的吸收作用而忽略散射作用,从而会造成对大气中水汽含量的高估。为了克服这一缺点,文中设计了RTTOV微波散射模块在WRF-3DVAR系统中的... 一直以来,受同化系统中观测算子的限制,云区的卫星微波观测资料在使用时都常会做晴空假设,只考虑大气的吸收作用而忽略散射作用,从而会造成对大气中水汽含量的高估。为了克服这一缺点,文中设计了RTTOV微波散射模块在WRF-3DVAR系统中的应用方案,使得计算辐射能衰减的同时考虑大气的散射作用,并在此基础上通过4组试验进行了风云3-A星微波湿度计亮温以及多普勒雷达反射率因子的同化研究对比。结果表明:RTTOV微波散射模块的引入,能有效抑制晴空辐射模块对大气水汽含量的高估。若先同化雷达反射率因子后再继续同化卫星资料,会发现同化雷达后,同化区域内大气水凝物含量明显增加,受此影响同化卫星资料时大气的散射作用也会随之增大。并且雷达同化区域覆盖率越大,对降水预报的改善效果也愈明显。 展开更多
关键词 资料同化 风云三号 微波湿度计 RTTOV—SCATT 雷达反射率因子
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FY-3A MWHS资料偏差订正方法研究 被引量:8
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作者 鲍艳松 殷佳研 陆其峰 《热带气象学报》 CSCD 北大核心 2015年第6期757-765,共9页
作为中国新一代极轨气象卫星,风云三号A星(FY-3A)大气垂直探测资料在区域数值天气预报中的同化应用至关重要。为实现FY-3A大气湿度垂直探测仪(MWHS)资料的直接同化应用,重点研究MWHS资料偏差订正问题。根据MWHS资料特征,在参考欧洲... 作为中国新一代极轨气象卫星,风云三号A星(FY-3A)大气垂直探测资料在区域数值天气预报中的同化应用至关重要。为实现FY-3A大气湿度垂直探测仪(MWHS)资料的直接同化应用,重点研究MWHS资料偏差订正问题。根据MWHS资料特征,在参考欧洲中期天气预报中心(ECMWF)原全球TIROS大气垂直探测仪(TOVS)资料偏差订正方案的基础上,建立适用于FY-3A卫星MWHS辐射率资料的偏差订正方案,分析该方案的订正效果。(1)扫描偏差具有星下点对称性,各通道不同纬度带和扫描角的扫描偏差存在差异,通道1~5的扫描偏差绝对值范围分别为0~1.13 K、0~6.4 K、0~0.76 K、0~0.84 K和0~2.1 K。(2)偏差订正方法有效,订正后的通道2~4观测残差概率分布呈现均值为0的高斯分布,且通道1和5观测残差更接近均值为0的高斯分布。(3)偏差订正后观测残差标准差均有所降低,表明偏差订正能够提高MWHS资料对分析场的调整。试验证明FY-3A MWHS资料具有较高的数据质量以及同化应用的潜力;建立的偏差订正方案可为FY-3A MWHS资料直接同化提供条件。 展开更多
关键词 FY-3A气象卫星 大气湿度垂直探测仪(MWHS) 资料同化 偏差订正
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基于亮温通道变率的FY-3C微波湿度计陆地云检测新方法 被引量:2
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作者 朱利剑 秦正坤 王金成 《气象学报》 CAS CSCD 北大核心 2018年第3期434-448,共15页
云检测是卫星资料同化的重要前处理步骤,无论是晴空资料同化还是有云资料同化,都需要准确地区分有云和晴空资料。由于陆地地表发射率的多变性和微波能穿透部分云类的特点,微波湿度计资料在陆地上空的云检测研究一直是难点。利用快速辐... 云检测是卫星资料同化的重要前处理步骤,无论是晴空资料同化还是有云资料同化,都需要准确地区分有云和晴空资料。由于陆地地表发射率的多变性和微波能穿透部分云类的特点,微波湿度计资料在陆地上空的云检测研究一直是难点。利用快速辐射传输模式(CRTM)分析了不同云类条件下FY-3C微波湿度计(MWHS-Ⅱ)各通道亮温的通道间变率特征,根据MWHS-Ⅱ亮温通道间变率随云高以及云中液态水含量的增大而减小的特点,提出了一个基于亮温通道变率的MWHS-Ⅱ陆地资料云检测方法。与已有的云产品比较结果表明:新的云检测算法能有效地剔除大部分受云影响的资料,剔除后的晴空资料观测和模拟偏差更好地符合高斯分布。新方法对过冷水云、冰云、重叠云的检测能力较强,正确检测率可以达到80%,对卷云以及高度较低的水云的检测能力相对较弱。新方法能有效利用MWHS-Ⅱ观测资料自身完成云检测,在MWHS-Ⅱ资料同化中有很好的应用前景。 展开更多
关键词 微波湿度计 微波湿度计(MWHS-Ⅱ) 云检测 快速辐射传输模式(CRTM)
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