Evaluation of SWER(Ze) Relationships by Precipitation Imaging Package (PIP) during ICE-POP 2018

  • Tokay, Ali; 
  • Helms, Charles N.; 
  • Kim, Kwonil; 
  • Gatlin, Patrick N.; 
  • Wolff, David B.
Citations

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초록

Improving estimation of snow water equivalent rate (SWER) from radar reflectivity (Ze), known as a SWER(Ze) relationship, is a priority for NASA's Global Precipitation Measurement (GPM) mission ground validation pro-gram as it is needed to comprehensively validate spaceborne precipitation retrievals. This study investigates the performance of eight operational and four research-based SWER(Ze) relationships utilizing Precipitation Imaging Probe (PIP) observations from the International Collaborative Experiment for Pyeongchang 2018 Olympic and Paralympic Winter Games (ICE-POP 2018) field campaign. During ICE-POP 2018, there were 10 snow events that are classified by synoptic conditions as either cold low or warm low, and a SWER(Ze) relationship is derived for each event. Additionally, a SWER(Ze) relationship is de-rived for each synoptic classification by merging all events within each class. Two new types of SWER(Ze) relationships are de-rived from PIP measurements of bulk density and habit classification. These two physically based SWER(Ze) relationships provided superior estimates of SWER when compared to the operational, event-specific, and synoptic SWER(Ze) relation-ships. For estimates of the event snow water equivalent total, the event-specific, synoptic, and best-performing operational SWER(Ze) relationships outperformed the physically based SWER(Ze) relationship, although the physically based relation-ships still performed well. This study recommends using the density or habit-based SWER(Ze) relationships for microphysical studies, whereas the other SWER(Ze) relationships are better suited toward hydrologic application.

키워드

Snowfall; Cloud microphysics; In situ atmospheric observations; SNOWFALL-RATE; MICROPHYSICAL PROPERTIES; RADAR REFLECTIVITY; FALL SPEED; DISDROMETER; RETRIEVAL; CLASSIFICATION; UNCERTAINTIES; IMPACT
제목
Evaluation of SWER(Ze) Relationships by Precipitation Imaging Package (PIP) during ICE-POP 2018
저자
Tokay, Ali; Helms, Charles N.; Kim, Kwonil; Gatlin, Patrick N.; Wolff, David B.
DOI
10.1175/JHM-D-22-0101.1
발행일
2023-04
유형
Article
저널명
Journal of Hydrometeorology
권
24
호
4
페이지
691 ~ 708