对流层中二氧化碳、温度和水蒸气的变化及其相互关系

IF 1 4区 工程技术 Q4 INSTRUMENTS & INSTRUMENTATION
MAPAN Pub Date : 2023-11-16 DOI:10.1007/s12647-023-00689-z
Anju Gupta, S. K. Dhaka
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引用次数: 0

摘要

在本研究中,利用9年(2003-2011年)对流层中部(300-500 hPa)大气红外探测器(AIRS)数据分析了二氧化碳(CO2)、温度和水蒸气的趋势和变化。分析的重点仍然是全球和区域(印度)规模,以及对其相互关系的更好理解。结果表明,9年间,全球和印度地区对流层中层二氧化碳浓度分别从~ 373增加到~ 393 ppm和~ 373增加到~ 392 ppm。然而,在同一时期的温度和水汽观测中没有观测到实质性的趋势(增加或减少)。进一步分析了CO2、温度和水蒸气的非趋势数据,以了解这些参数与两种温室气体(CO2和水蒸气)对温度的影响之间的相互关系。分析表明,温度与水蒸气的相关性非常高(~ 0.90),但温度与二氧化碳的相关性不显著,这表明水蒸气的变化可能比CO2的变化对温度的影响更大,这一特征作为温室气体比CO2发挥更大的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Variations and Inter Relationship in Mid-tropospheric Carbon Dioxide, Temperature and Water Vapour Using AIRS Observations

Variations and Inter Relationship in Mid-tropospheric Carbon Dioxide, Temperature and Water Vapour Using AIRS Observations

Variations and Inter Relationship in Mid-tropospheric Carbon Dioxide, Temperature and Water Vapour Using AIRS Observations

In the present study, trends and variations in carbon dioxide (CO2), temperature and water vapour are analysed using 9 years (2003–2011) of mid-tropospheric (300–500 hPa) Atmospheric Infrared Sounder (AIRS) data. The focus of analysis remains on both a global as well as regional (India) scale along with improved understanding of their inter relationship. It was observed that the mid-tropospheric carbon dioxide increased from ~ 373 to ~ 393 ppm and ~ 373 to ~ 392 ppm, respectively, over the globe and the Indian region during 9 years. However, no substantial trends (increasing or decreasing) were observed in the temperature and water vapour observations for the same period of time. De-trended data of CO2, temperature and water vapour were further analysed to understand the inter relationship between these parameters and the influence of two greenhouse gases (CO2 and water vapour) on temperature. Analysis suggests a very high correlation (~ 0.90) between temperature and water vapour, however, no significant correlation was observed between temperature and carbon dioxide data, indicating that change in water vapour may have stronger influence on temperature compared to the change in CO2, this feature can play a more significant role as a greenhouse gas than CO2.

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来源期刊
MAPAN
MAPAN 工程技术-物理:应用
CiteScore
2.30
自引率
20.00%
发文量
91
审稿时长
3 months
期刊介绍: MAPAN-Journal Metrology Society of India is a quarterly publication. It is exclusively devoted to Metrology (Scientific, Industrial or Legal). It has been fulfilling an important need of Metrologists and particularly of quality practitioners by publishing exclusive articles on scientific, industrial and legal metrology. The journal publishes research communication or technical articles of current interest in measurement science; original work, tutorial or survey papers in any metrology related area; reviews and analytical studies in metrology; case studies on reliability, uncertainty in measurements; and reports and results of intercomparison and proficiency testing.
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