N: 40 S: -40 E: 180 W: -180
Description
The new version of these data is in GPM-like format (consistent with the GPM Dual-frequency Radar data format), and can be found under the name GPM_3PR.
This product consists of monthly statistics of the PR measurements at both a low (5 degrees x 5 degrees) and a high (0.5 degrees x 0.5 degrees) horizontal resolution. The low resolution grids are in the Planetary Grid 1 structure and include 1) mean and standard deviation of the rain rate, reflectivity, path-integrated attenuation (PIA), storm height, Xi, bright band height and the NUBF (Non-Uniform Beam Filling) correction; 2) rain fractions; 3) histograms of the storm height, bright-band height, snow-ice layer, reflectivity, rain rate, path-attenuation and NUBF correction; 4) correlation coefficients. The high resolution grids are in the Planetary Grid 2 structure and contain mean rain rate along with standard deviation and rain fractions.
Product Summary
Citation
Citation is critically important for dataset documentation and discovery. This dataset is openly shared, without restriction, in accordance with the EOSDIS Data Use and Citation Guidance.
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Publications Citing This Dataset
| Title | Year Sort ascending | Author | Topic |
|---|---|---|---|
| Observationinformed machine learning convective scheme: A new training strategy | Huang, Junjie, Li, Lijuan, Liao, Wenhan, Wang, Bin, Pu, Ye, Xie, Feng, Hua, Liansheng, Liu, Gaoping | Droplet Size, Precipitation Rate, Radar Reflectivity | |
| Sensitivity of enhanced vertical resolution in the operational Global Forecast System (GFS) T1534 on the short to medium range forecast of Indian summer monsoon | Ganai, Malay, Krishna, R. Phani Murali, Tirkey, Snehlata, Mukhopadhyay, Parthasarathi | Precipitation, Precipitation Amount, Precipitation Rate, Snow, Rain, Droplet Size, Radar Reflectivity | |
| Nocturnal Extreme Rainfall over the Central Yungui Plateau under Cold and Warm Upper-Level Anomaly Backgrounds during Warm Seasons in 19802020 | Yuan, Weihua, Li, Zhi | Droplet Size, Precipitation Rate, Radar Reflectivity | |
| Finescale characteristics and dominant synoptic factors of spring precipitation over complex terrain of the southeastern Tibetan Plateau | Zhao, Yin, Li, Jian, Ren, Liwen, Li, Nina, Li, Puxi | Precipitation, Precipitation Amount, Precipitation Rate, Snow, Rain, Droplet Size, Radar Reflectivity | |
| Thunderstorm and Lightning Activities over Western Pacific, Northern Indian Ocean and South China Sea Along with Their Adjacent Lands | DING, Jia-xin, ZHANG, Yi-jun, ZHENG, Dong, YAO, Wen, ZHANG, Wen-juan | Droplet Size, Precipitation Rate, Radar Reflectivity | |
| The doubleITCZ problem in CMIP6 and the influences of deep convection and model resolution | Ma, Xinyu, Zhao, Shuyun, Zhang, Hua, Wang, Wuke | Total Surface Precipitation Rate, Droplet Size, Precipitation Rate, Radar Reflectivity | |
| Attenuation Statistics For Millimetre-Wave Links in Tropical Regions | Maaruf, Nefrisca N., Hendrantoro, Gamantyo, Mauludiyanto, Achmad | Total Surface Precipitation Rate, Droplet Size, Precipitation Rate, Radar Reflectivity | |
| The ConvectiveToTotal Precipitation Ratio and the Drizzling Bias in Climate Models | Chen, Di, Dai, Aiguo, Hall, Alex | Total Surface Precipitation Rate, Droplet Size, Precipitation Rate, Radar Reflectivity | |
| Linkage of water vapor distribution in the lower stratosphere to organized Asian summer monsoon convection | Singh, Bhupendra Bahadur, Krishnan, Raghavan, Ayantika, D. C., Vellore, Ramesh K., Sabin, T. P., Kumar, K. Ravi, Brunamonti, Simone, Hanumanthu, Sreeharsha, Jorge, Teresa, Oelsner, Peter, Sonbawne, Sunil, Naja, Manish, Fadnavis, Suvarna, Peter, Thomas, Srivastava, Manoj K. | Droplet Size, Precipitation Rate, Radar Reflectivity | |
| A machine learning approach to derive precipitation estimates at global scale using space radar and ground-based observations | Chandrasekar, V., Chen, Haonan | Droplet Size, Precipitation Rate, Radar Reflectivity | |
| Groundwater isotope ratios reflect convective and stratiform (paleo) precipitation fractions in Brazil | Chang, Hung K., Goncalves, Roger D., Aggarwal, Pradeep K., Stradioto, Marcia R., Hespanhol, Emilio C.B., Sturchio, Neil C., Romatschke, Ulrike, Araguas, Luis J.A. | Droplet Size, Precipitation Rate, Radar Reflectivity | |
| Precipitation Characteristics in the Community Atmosphere Model and Their Dependence on Model Physics and Resolution | Chen, Di, Dai, Aiguo | Total Surface Precipitation Rate, Droplet Size, Precipitation Rate, Radar Reflectivity | |
| Rainfall estimation from ground radar and TRMM precipitation radar using hybrid deep neural networks | Chen, Haonan, Chandrasekar, V., Tan, Haiming, Cifelli, Robert | Droplet Size, Precipitation Rate, Radar Reflectivity | |
| Possible causes for the asymmetric evolution between the aerosol optical depth over East Asia and eastern United States during boreal spring | Jin, Qihua, Liu, Boqi, He, Jinhai | Droplet Size, Precipitation Rate, Radar Reflectivity | |
| TRMM PR observed spatial patterns of the convective-stratiform rainfall over Indonesia and their response to ENSO | As-syakur, Abd. Rahman | Droplet Size, Precipitation Rate, Radar Reflectivity | |
| Contrast in monsoon precipitation over oceanic region of north Bay of Bengal and east equatorial Indian Ocean | Pokhrel, Samir, Hazra, Anupam, Saha, Subodh Kumar, Chaudhari, Hemantkumar S., Metya, Abirlal, Ghude, Sachin D., Konwar, Mahen | Droplet Size, Precipitation Rate, Radar Reflectivity | |
| Evaluation of TRMM 3B43 data over the Yangtze River Delta of China | Cao, Yueqian, Zhang, Wu, Wang, Wenjing | Total Surface Precipitation Rate, Droplet Size, Precipitation Rate, Radar Reflectivity | |
| Impact of Convective Activity on Precipitation 18O in IsotopeEnabled General Circulation Models | Hu, Jun, EmileGeay, Julien, Nusbaumer, Jesse, Noone, David | Droplet Size, Precipitation Rate, Radar Reflectivity | |
| Using GRACE to constrain precipitation amount over cold mountainous basins | Behrangi, Ali, Gardner, Alex S., Reager, John T., Fisher, Joshua B. | Total Surface Precipitation Rate, Droplet Size, Precipitation Rate, Radar Reflectivity, Cloud Liquid Water/Ice, Precipitation Amount | |
| Tropical coastal dehydrator in global atmospheric water circulation | Ogino, ShinYa, Yamanaka, Manabu D., Mori, Shuichi, Matsumoto, Jun | Droplet Size, Precipitation Rate, Radar Reflectivity | |
| The impact of simulated mesoscale convective systems on global precipitation: A multiscale modeling study | Tao, WeiKuo, Chern, JiunDar | Total Surface Precipitation Rate, Droplet Size, Precipitation Rate, Radar Reflectivity | |
| Effect of cloud microphysics on Indian summer monsoon precipitating clouds: a coupled climate modeling study | Hazra, Anupam, Chaudhari, Hemantkumar S., Saha, Subodh K., Pokhrel, Samir | Droplet Size, Precipitation Rate, Radar Reflectivity, Water Vapor Profiles, Convective Surface Precipitation Rate, Cloud Liquid Water/Ice, Cloud Precipitable Water, Rain, Atmospheric Heating | |
| Differences and links between the East Asian and South Asian summer monsoon systems: Characteristics and variability | Huang, Ronghui, Liu, Yong, Du, Zhencai, Chen, Jilong, Huangfu, Jingliang | Droplet Size, Precipitation Rate, Radar Reflectivity | |
| Estimating vertical motion profile top-heaviness: Reanalysis compared to satellite-based observations and stratiform rain fraction | Back, Larissa E., Hansen, Zachary, Handlos, Zachary | Rain, Droplet Size, Precipitation Rate, Radar Reflectivity | |
| Seminal role of stratiform clouds in large-scale aggregation of tropical rain in boreal summer monsoon intraseasonal oscillations | Kumar, Siddharth, Arora, Anika, Chattopadhyay, R., Hazra, Anupam, Rao, Suryachandra A., Goswami, B. N. | Total Surface Precipitation Rate, Droplet Size, Precipitation Rate, Radar Reflectivity |