Application of wetPf2 Data for Investigating Characteristics of Temperature and Humidity of Air Masses over Paracel and Spratly Islands

Author:

Pham Khuong Le12ORCID,Nguyen Anh Xuan12ORCID,Nguyen Hiep Van13ORCID,Hoang Son Hai12ORCID,Nguyen Vinh Nhu12ORCID,Vu Thang Van4ORCID

Affiliation:

1. Institute of Geophysics, Vietnam Academy of Science and Technology, Hanoi, Vietnam

2. Graduate University of Science and Technology, Vietnam Academy of Science and Technology, Hanoi, Vietnam

3. Northern Delta and Midland Regional Hydro-Meteorological Center, Vietnam Meteorological and Hydrological Administration, Hanoi, Vietnam

4. Vietnam Institute of Meteorology, Hydrology and Climate Change, Hanoi, Vietnam

Abstract

This article uses data from the second-generation Constellation Observing System for Meteorology, Ionosphere, and Climate (COSMIC-2) satellites (wetPf2) to study the temperature and humidity properties of the air masses over Paracel and Spratly Islands in the Vietnam East Sea (South China Sea). The satellite observational data were validated with the radiosonde data from three stations in Vietnam: Hanoi, Danang, and Ho Chi Minh City. Subsequently, the wetPf2 data are used to analyze the characteristics of temperature and relative humidity variations of the air masses over the Paracel and Spratly regions. Results show that the mean error of the satellite observational data for temperature ranges from −0.06°C to −0.02°C, with standard deviations ranging from 0.73°C to 1.04°C. The mean error of relative humidity fluctuates between 11.6% and 12.5%, with standard deviations ranging from 15.1% to 19.1%. The values are reasonable and comparable to those in previous studies. Seasonal variations of temperature and humidity show that the air mass over the Paracel Islands exhibits a larger annual temperature with an annual variation of approximately 5.0°C, significantly higher than the value of 2.2°C in the air mass over the Spratly Islands. The difference may be due to the greater influence of continental and seasonal wind systems in the northern region. Within both air masses, the annual temperature variation in the boundary layer is much larger than that in the free atmosphere. Annual relative humidity variation is higher in summer and autumn than in winter and spring. The significant changes in the relative humidity with height during winter and no significant change of the relative humidity with height during summer may be related to the important role of strong convective activity carrying moist air upward to higher atmospheric levels during the summer time.

Publisher

Hindawi Limited

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