方法对比
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| 谱格微物理方案× | 云凝结核分析× | WRF模型× | |
|---|---|---|---|
| 领域 | 气象学 | 气象学 | 气象学 |
| 方法族 | Process / pipeline | Process / pipeline | Process / pipeline |
| 起源年份≠ | 1999 | 1959 | 2000 |
| 提出者≠ | Khain, Ovtchinnikov | Twomey, Woodard | Skamarock and Klemp |
| 类型≠ | Explicit particle size distribution model | Cloud microphysical measurement | Atmospheric simulation system |
| 开创性文献≠ | Khain, A. P., Ovtchinnikov, M., Pinsky, M., Pokrovsky, A., & Krugliak, H. (2000). Notes on the state-of-the-art numerical modeling of cloud microphysics. Atmospheric Research, 55(3–4), 159-224. DOI ↗ | Dusek, U., Frank, G. P., Hildebrandt, L., et al. (2006). Size matters more than chemistry for cloud-nucleating ability of aerosol particles. Science, 312(5778), 1375-1378. DOI ↗ | Skamarock, W. C., Klemp, J. B., Dudhia, J., et al. (2008). A Description of the Advanced Research WRF Version 3. NCAR Technical Note NCAR/TN-475+STR. link ↗ |
| 别名≠ | Bin microphysics, Spectral microphysics, Explicit microphysics | CCN analysis, Cloud condensation nuclei, CCN measurement | Weather Research and Forecasting, WRF, ARW, NMM |
| 相关≠ | 3 | 3 | 4 |
| 摘要≠ | Spectral bin microphysics is a detailed cloud microphysical modeling approach that explicitly represents the particle size distribution (PSD) by dividing particles into discrete size bins. Rather than assuming a fixed shape for the PSD, bin models track the number and mass of particles in each size category, allowing detailed simulation of cloud and precipitation processes. | Cloud condensation nuclei (CCN) analysis examines the number and properties of aerosol particles capable of nucleating cloud droplets at various supersaturation levels. This field involves measuring CCN concentrations, characterizing their chemical composition and size, and relating aerosol properties to cloud microphysical processes. | The Weather Research and Forecasting (WRF) model is a mesoscale atmospheric simulation system used for weather forecasting, research, and climate applications. Developed cooperatively by NCAR, NOAA, and academic institutions, WRF became operational in 2004 and has become one of the most widely used atmospheric models worldwide. |
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