Raindrop Size Distribution (RSD) | Web Scraping Tool | ScrapeStorm
Abstract:Raindrop size distribution (RSD) is an important concept of Meteorology and hydrology which shows the size and the distribution of the number of raindrops forming rain. ScrapeStormFree Download
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Introduction
Raindrop size distribution (RSD) is an important concept of Meteorology and hydrology which shows the size and the distribution of the number of raindrops forming rain. Raindrop diameter (usually 0.1 to 6) mm It is possible to quantitatively analyze the strength and type of precipitation (rain, drizzle, heavy rain), and the development process of the cloud and the mechanism of rainfall formation. The raindrop size distribution is used as basic data in a wide range of fields such as rainfall estimation by radar observation, accuracy improvement of meteorological model, ground precipitation observation, and climate change research.
Applicable Scene
The raindrop particle size distribution data is suitable for meteorological research, precipitation type identification, radar inversion calibration, agricultural irrigation optimization, and soil erosion model construction, which require precise quantification of the microphysical characteristics of precipitation.
Pros: Raindrop particle size distribution data can accurately characterize the microphysical characteristics of precipitation, providing key parameters for precipitation mechanism research, radar quantitative estimation, agricultural irrigation optimization, and soil erosion prevention and control, and improving the precision level of meteorological forecasting and resource management.
Cons: The measurement of raindrop particle size is limited by instrument accuracy, sampling time, and spatial representativeness, and may have problems such as large data dispersion and insufficient capture of extreme particle sizes. It is necessary to combine multi device collaborative observation to improve reliability.
Legend
1. Raindrop Size Distribution (RSD) of tropical cyclone rainfall.

2. Scattergram of raindrop size distribution (DSD) at different diameter size and fall velocity classes after QC for the entire experiment period.

Related Article
Reference Link
https://www.sciencedirect.com/science/article/abs/pii/S0377026525000600
https://agupubs.onlinelibrary.wiley.com/doi/full/10.1029/2018JD028307