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contributor authorKumjian, Matthew R.
contributor authorMartinkus, Charlotte P.
contributor authorPrat, Olivier P.
contributor authorCollis, Scott
contributor authorvan Lier-Walqui, Marcus
contributor authorMorrison, Hugh C.
date accessioned2019-09-22T09:03:21Z
date available2019-09-22T09:03:21Z
date copyright11/26/2018 12:00:00 AM
date issued2018
identifier otherJAMC-D-18-0121.1.pdf
identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4262572
description abstractThere is growing interest in combining microphysical models and polarimetric radar observations to improve our understanding of storms and precipitation. Mapping model-predicted variables into the radar observational space necessitates a forward operator, which requires assumptions that introduce uncertainties into model?observation comparisons. These include uncertainties arising from the microphysics scheme a priori assumptions of a fixed drop size distribution (DSD) functional form, whereas natural DSDs display far greater variability. To address this concern, this study presents a moment-based polarimetric radar forward operator with no fundamental restrictions on the DSD form by linking radar observables to integrated DSD moments. The forward operator is built upon a dataset of >200 million realistic DSDs from one-dimensional bin microphysical rain-shaft simulations, and surface disdrometer measurements from around the world. This allows for a robust statistical assessment of forward operator uncertainty and quantification of the relationship between polarimetric radar observables and DSD moments. Comparison of ?truth? and forward-simulated vertical profiles of the polarimetric radar variables are shown for bin simulations using a variety of moment combinations. Higher-order moments (especially those optimized for use with the polarimetric radar variables: the sixth and ninth) perform better than the lower-order moments (zeroth and third) typically predicted by many bulk microphysics schemes.
publisherAmerican Meteorological Society
titleA Moment-Based Polarimetric Radar Forward Operator for Rain Microphysics
typeJournal Paper
journal volume58
journal issue1
journal titleJournal of Applied Meteorology and Climatology
identifier doi10.1175/JAMC-D-18-0121.1
journal fristpage113
journal lastpage130
treeJournal of Applied Meteorology and Climatology:;2018:;volume 058:;issue 001
contenttypeFulltext


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