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六盘山地形及相对湿度对微波辐射计反演气温的影响

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利用2018年4月至2019年11月的六盘山隆德站微波辐射计探测资料与平凉站探空资料,研究了微波辐射计反演温度(TM)对空气相对湿度的敏感性.首次提出湿度敏感性系数(HSR)和零度漂移度(ZDD)概念,利用这两个参量在不同高度层的分布特征,研究了六盘山地形对空气相对湿度和温度的影响,主要结论如下:(1)非降水天气条件下,空气相对湿度越大,HSR与1.0的差别越大,ZDD也越大.(2)六盘山地形对大气层的湿度垂直分布影响较大.爬坡气流或抬升气流明显增加了 3 km以下气层湿度水平,晴天和阴天条件下空气相对湿度分别在山顶以上0.5 km气层和1.0~2.0 km气层达到最大,TM比实际温度最大能偏低2.7℃.(3)地形对气层湿度的影响进一步影响了空气温度的垂直分布,阴天条件下的大气逆辐射加热使得3 km以下气层平均升温2.3℃,因湿度敏感性产生的温度影响平均达到0.9℃,最高能达到1.7℃.
The Impact of Liupan Mountain Terrain and Relative Humidity on Microwave Radiometer-based Temperature Inversion
Using the data of a microwave radiometer(MWR)placed at the foot of Liupan Mountain at Longde station from April 2018 to November 2019 and radiosonde data from Pingliang station,the humidity sensitivity of the retrieved temperature of an MWR(TM)is studied.The humidity sensitivity rate(HSR)and the zero-degree drift(ZDD)are proposed for the first time.On the basis of the distribution characteristics of HSR and ZDD at different altitude layers,the influence of mountain terrain on layer humidity and temperature is studied.This study shows that:(1)Under non-precipitation conditions,the wetter the air is,the larger the difference between HSR and 1.0,and the greater the value of ZDD.(2)Terrain has a great influence on the vertical distribution of layer humidity.The climbing air flow or uplift air flow substantially increases the humidity level of layers below 3 km.The air humidity reaches a maximum in the layer at 0.5 km above the mountain top on clear days and in the layer at 1.0-2.0 km above the mountain top on cloudy days.The difference between TM and the actual station temperature reaches a maximum of 2.7℃.(3)Terrain affects the vertical distribution of the layer humidity and then affects the layer temperature.The downward atmospheric radiation on cloudy days heats the lower layer and causes the average temperature of layers below 3 km to increase by 2.3℃,and the temperature increase caused by humidity sensitivity reaches 0.9℃,up to 1.7℃.

Microwave radiometerTemperatureSensitivityLiupanshanTerrain

邱玉珺、舒志亮、陆春松、林彤、党张利

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南京信息工程大学中国气象局气溶胶与云降水重点开放实验室,南京 210044

中国气象局旱区特色农业气象灾害监测预警与风险管理重点实验室,银川 750002

宁夏气象防灾减灾重点实验室,银川 750002

微波辐射计 温度 敏感性 六盘山 地形

国家自然科学基金项目国家自然科学基金项目国家自然科学基金项目宁夏自然科学基金项目

4207507342075077421750992022AAC03684

2024

大气科学
中国科学院大气物理研究所

大气科学

CSTPCD北大核心
影响因子:2.11
ISSN:1006-9895
年,卷(期):2024.48(2)
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