Comparisons of Rain Estimates from Ground Radar and Satellite Over Mountainous Regions
Lin X, Kidd C, Tao J, Barros A. 2016. Comparisons of Rain Estimates from Ground Radar and Satellite Over Mountainous Regions. The Journal of Hydrometeorology
ABSTRACT: A high-resolution rainfall product merging surface radar and an enhanced gauge network is used as a reference to examine two operational surface radar rainfall products over mountain areas. The two operational rainfall products include radar-only and conventional-gauge-corrected radar rainfall products. Statistics of rain occurrence and rain amount including their geographical, seasonal, and diurnal variations are examined using 3-year data. It is found that the three surface radar rainfall products in general agree well with one another over mountainous regions in terms of horizontal mean distributions of rain occurrence and rain amount. Frequency of rain occurrence and fraction of rain amount also indicate similar distribution patterns as a function of rain intensity. The diurnal signals of precipitation over mountain ridges are well captured and joint distributions of coincident raining samples indicate reasonable correlations during both summer and winter. Factors including undetected low-level precipitation, limited availability of gauges for correcting the Z-R relationship over the mountains, and radar beam blocking by mountains are clearly noticed in the two conventional radar rainfall products. Both radar-only and conventional-gauge-corrected radar rainfall products underestimate the rain occurrence and fraction of rain amount at intermediate and heavy rain intensities. Comparison of PR and TMI against a surface radar-only rainfall product indicates that the PR performs equally well with the high-resolution radar-only rainfall product over complex terrains at intermediate and heavy rain intensities during the summer and winter. TMI, on the other hand, requires improvement to retrieve wintertime precipitation over mountain areas.
- Type
- Journal Article
- Authors
- Lin, Xin; Kidd, Chris; Tao, Jing; Barros, Ana
- Units
- GRSM
- Keywords
- APHN, Appalachian Highlands Network, forecasting, Great Smoky Mountains National Park, GRSM, GRSM-00493, meteorology, Pigeon River, precipitation, rain gauge, remote sensing, SER, Southeast Region