男女羞羞视频在线观看,国产精品黄色免费,麻豆91在线视频,美女被羞羞免费软件下载,国产的一级片,亚洲熟色妇,天天操夜夜摸,一区二区三区在线电影
Global EditionASIA 中文雙語Fran?ais
China

Study sheds light on water cycles on plateau

China Daily | Updated: 2025-11-05 00:00
Share
Share - WeChat

LANZHOU — Chinese scientists have recently filled a gap in terms of long-term observation and research of below-cloud evaporation in the hinterland of the Qinghai-Tibet Plateau in the west of the country, according to the Northwest Institute of Eco-environment and Resources of the Chinese Academy of Sciences.

The study advances quantitative research on below-cloud evaporation in this critical region, deepening understanding of the response mechanism of the high-altitude hydrological cycle in the context of global warming, the NIEER said.

Conducted by a joint study team featuring researchers from the NIEER and the Institute of Mountain Hazards and Environment of the CAS, the findings of this study have been published in the Journal of Hydrology.

The Qinghai-Tibet Plateau, dubbed "Asia's water tower", is a very important water resource reservoir. The stable precipitation isotope on this plateau serves as a key indicator in analyzing regional and global water cycles and is also widely used in paleoclimate reconstruction and water cycle research, said He Xiaobo, associate researcher at the NIEER.

The hinterland region of the Qinghai-Tibet Plateau, especially in the Tanggula Range area which is a climate transition zone, is the core location of "Asia's water tower". This region, notably, is experiencing significant warming and is becoming considerably wetter.

He noted that there used to be a gap in quantitative research regarding below-cloud evaporation in the hinterland of the Qinghai-Tibet Plateau, especially in the Tanggula Mountains Range area of the climate transition zone. The harsh high-altitude environment there had long hampered the accumulation of long-term observation data, thus restricting understanding of the water cycle at such high altitudes.

Based on continuous observational data spanning a period of 12 years, the study team simulated the below-cloud evaporation process. Researchers combined long-term observations of stable precipitation isotopes and meteorological data with the Stewart model to estimate sub-cloud evaporation and determine its influence on precipitation isotopes in the Tanggula Mountains Range.

They quantified the degree of influence of below-cloud evaporation on stable precipitation isotopes and revealed the key driving factors and their mechanisms of action.

The annual weighted mean of the remaining raindrop fraction was estimated at 88.1 percent, and a significant increasing trend was observed at the annual scale, indicating a progressive weakening of below-cloud evaporation intensity in this region, according to the study.

Significant isotope modifications in precipitation were observed during the descent from the cloud base to the ground. This indicated that below-cloud evaporation contributed to a noticeable enrichment of heavy stable precipitation isotopes in the central region of the plateau.

By clarifying the impact of below-cloud evaporation on the amount of precipitation, this study provides a critical scientific basis for paleoclimatic reconstruction and water resource management in the central Qinghai-Tibet Plateau, He noted.

He disclosed that the study team will further expand its observation network, conduct studies across a longer timescale, and continuously reveal response mechanisms of the water cycle on the Qinghai-Tibet Plateau to changes in the global climate.

Xinhua

Today's Top News

Editor's picks

Most Viewed

Top
BACK TO THE TOP
English
Copyright 1995 - . All rights reserved. The content (including but not limited to text, photo, multimedia information, etc) published in this site belongs to China Daily Information Co (CDIC). Without written authorization from CDIC, such content shall not be republished or used in any form. Note: Browsers with 1024*768 or higher resolution are suggested for this site.
License for publishing multimedia online 0108263

Registration Number: 130349
FOLLOW US
主站蜘蛛池模板: 大丰市| 阿尔山市| 邢台县| 扎兰屯市| 板桥市| 河曲县| 涿州市| 大丰市| 湄潭县| 卫辉市| 巫山县| 刚察县| 同江市| 砀山县| 哈巴河县| 嘉善县| 吴桥县| 通江县| 德安县| 阜平县| 乌拉特中旗| 南丹县| 城步| 普安县| 滨州市| 渭南市| 五河县| 江安县| 泌阳县| 武定县| 若尔盖县| 潞城市| 剑川县| 兰溪市| 门源| 芦山县| 航空| 安吉县| 米林县| 陇西县| 平利县| 左权县| 慈利县| 本溪市| 睢宁县| 濉溪县| 卫辉市| 五华县| 长垣县| 漯河市| 芦溪县| 孝感市| 乌兰浩特市| 新蔡县| 印江| 九江市| 东城区| 长垣县| 科技| 万州区| 敦煌市| 寻甸| 岳普湖县| 黄梅县| 新蔡县| 醴陵市| 汶上县| 砀山县| 霸州市| 大关县| 汝城县| 松阳县| 兰州市| 孝昌县| 册亨县| 香港| 乌海市| 武城县| 根河市| 屏东县| 八宿县| 广饶县|