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Published byPauline Gregory Modified over 9 years ago
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Liam Tallis
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Introduction Know the vertical distribution of water vapour in the atmosphere Profile for input into radiative transfer schemes Need to know this profile accurately Sources Produce a profile of water distribution in the atmosphere Example Day: 18 th September 2008
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Radiosondes Dry bulb, wet bulb and relative humidity Easy to derive lots of other things from these Additional launches performed during campaign Average values for geographic area
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55.9km 52.2km
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Dropsondes Dropped from FAAM aircraft Regarded as more accurate than radiosonde Limited Height Profile Samples relatively small geographical area
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10:26:06 08:27:43 10:28:04 10:47:56 08:32:55 10:42:33
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7.9km
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GPS Water Vapour
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HATPRO Humidity and Temperature Profilers Partial availability whilst campaign was running at Camborne Vertical profile Temperature Relative humidity
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Microtops II Sunphotometer “The water vapour measurement is based on a pair of radiometric measurements in the IR band. The 940nm filter is located in a strong water vapour absorption band, while the 1020nm filter is affected only by aerosol scattering.”
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Microtops II Sunphotometer
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Aircraft Measurements FAAM Aircraft has numerous instruments on board recording information of use to use General Eastern chilled mirror probe Lyman-alpha total water content probe
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Numerical Models Met Office Model Fields Relative Humidity (%) ECMWF Model Field Specific Humidity (kg kg -1 ) Longitude, Latitude, Pressure, Time Need to extract the required information at each level As useful as “real” data?
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Cross Comparison Radiosonde FAAM Aircraft GPS Integrated Water Vapour HATPRO Microtops Dropsonde Numerical Models
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Cross Comparison TimeRadiosondeMicrotopsGPSHATPRODropsondeAltitude UTkg m -2 m 05:0015.8 14.616.5 08:28 14.96260 08:33 14.86250 09:0014.3 13.315.9 09:25 12 10:26 14.81070 10:28 141070 10:42 149101 10:48 158850 11:0015.0 14.316.6 11:15 13 12:0014.3 15.616.3 12:35 12
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