The Suppression of Aerosols to the Orographic Precipitation in the Qinling Mountains
Explore this paper's citation graph
- Type
- article
- Published
- 2008-01-01
- Cited by
- 8
- References
- 0
- OpenAlex
- https://openalex.org/W2389124059
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:132234888
Keywords
Precipitation, Orographic lift, Orography, Precipitation types, Environmental science
References
No references recorded for this paper.
Cited by
- Climate effects of dust aerosols over East Asian arid and semiarid regions
- Advances in cloud physics and weather modification in China
- Dust aerosol effect on semi-arid climate over Northwest China detected from A-Train satellite measurements
- Trends of extreme precipitation in eastern China and their possible causes
- Exposure characteristics of airborne bacteria during a haze pollution event at Qinling Mountain, China
- Comparative Analysis of SCMOC and Models Rainstorm Forecasting Performance in Qinling Mountains and Their Surrounding Areas
- The effect of stratus clouds on aerosol distribution in South China based on aircraft measurements
- DUST AEROSOLS AND ARIDITY TRENDS
Related papers
- The response of a simulated mesoscale convective system to increased aerosol pollution: Part I: Precipitation intensity, distribution, and efficiency
- The Relation between Orographic Cloud and Vertical Wind in Qilian
- Cloud Seeding Effects on Precipitation Intensity and Duration of Wintertime Orographic Clouds
- Sensitivity Experiments on the Orographic Snowfall over the Mountainous Region of Northern Japan
- A glaciation indirect aerosol effect in a statistical analysis of modeled mixed-phase orographic precipitation over the Alps
- The response of precipitation to aerosol through riming and melting in deep convective clouds
- Examination of aerosol effects on precipitation in deep convective clouds during the 1997 ARM summer experiment
- Aerosol effects on clouds and precipitation during the 1997 smoke episode in Indonesia
- Evolution of the Macro- and Microphysical Properties of Precipitation Fog in December 2007 in Nanjing