Warm-rain-process-convection暖雨过程对流课件_第1页
Warm-rain-process-convection暖雨过程对流课件_第2页
Warm-rain-process-convection暖雨过程对流课件_第3页
Warm-rain-process-convection暖雨过程对流课件_第4页
Warm-rain-process-convection暖雨过程对流课件_第5页
已阅读5页,还剩209页未读 继续免费阅读

下载本文档

版权说明:本文档由用户提供并上传,收益归属内容提供方,若内容存在侵权,请进行举报或认领

文档简介

HeavyrainfallandflashfloodHeavyrainfallandflashflood1Warm-rain-process-convection暖雨过程对流课件2FlashFloodsFlashfloodsarethenumberoneweather-relatedkillerinovermuchoftheglobeNearlyhalfofallflashfloodfatalitiesareautorelatedFlashFloodsFlashfloodsaret3Warm-rain-process-convection暖雨过程对流课件4FlashFloodDefinitionIntensePrecipitationSmallfast-responsebasins“Asituationwherethecausativeprecipitationandthesubsequentrunoffareoccurringonthesamescales.”

NATOAdvancedStudyInstitute(1999)FlashFloodDefinitionIntense5FlashfloodforecastingTheflashflood-aprototypicalhydro-meteorologicaltopicAmeteorologicalevent:rainfallAhydrologicalsettingBasinresponsetimesRunoffcharacteristicsWorkingwithhydrologists?Flashflood“guidance”isanestimateoftherainfallneededforflashfloodingtooccurFlashfloodforecastingThefla6FloodconsiderationsLargeriversliketheYangtzerespondtotherainfalloveraperiodofdaysFlashfloods-responsetorainfallisveryrapid:periodofperhaps10sofminutesSmallbasinsincomplexterrainarethosemostlikelytohaveflashfloodsUrbanfloodingcanhaveimportantimpacts-highrunoff.FloodconsiderationsLargerive720070718JinanFlashFloodingEventJinanisthecapitalcityofShandongprovince.During12hperiodfrom14:00BST(BeijingStandardTime)18Julyto02:00BST19July2007,theaveragerainfallfrom123weatherstationsforwholeShandongprovinceis62mm.Itscapitalcity,Jinan,hasexperiencedmostsevererainfall.The12hrainfallindowntownareais140mm,mostoftherainfallwasprecipitatedduring3hperiodfrom17:20to20:20BSTon18July2007.25peoplewerekilledbytheflashfloodinginJinancity.20070718JinanFlashFlooding8AFFForecastingstrategyObtainflashfloodguidancefromhydrologists:theminimumrainfallperunittimeneededfortheoccurrenceofaflashfloodBeginwiththequestion:“Whatistheprobabilityofrainfallapproachingthatvaluetoday?”AFFForecastingstrategyObtai9Precipitationin

FlashFloodsAccumulation5-50cmover1-12hoursDurationMostlylessthan3hoursIntensity

Arid/semi-aridclimates7.5-20cm/hour(avg.11.5cm/hour)Humidclimates12.5-30cm/hour(avg.19cm/hour)CourtesyMattKelschPrecipitationin

FlashFloods10Precipitationin

FlashFloodsEnhancedIntensityPrecipitationefficiencyTropical,maritimeconnectionDeep,above-freezinglayerLow-leveljet,rapidmoisturereplenishmentLow-levelfocus(terrainandboundary)/class/FLOAT_2001/index.htmPrecipitationin

FlashFloods11ThelowleverjetThelowleverjet12ThelowleveljetThelowleveljet13ThelowleveljetfromsouthwestThelowleveljetfromsouthwe14LowleveljetfromeastandmiddleleveljetfromsouthwestLowleveljetfromeastandmi15BasinCharacteristics

inFlashFloodsSmall9-150km2(avg.55km2)70%mountainouswatersheds>50%alteredUrbanizationDeforestation,firescarsThin/impermeablesurfacelayer,Clay,rocks(lowinfiltration)Pavement(noinfiltration)Or,thick,saturatedsoillayersCourtesyMattKelschBasinCharacteristics

inFlash16FlashFloodForecastingInsomecasesthehydrologyisthedrivingforce,andsignificantflashfloodscanhappenwithunimpressiverainfall.“FlashFloodforecastingrequiresmorethanaccurateforecastsofexcessiveaccumulation.”

-MattKelsch(2000)FlashFloodForecastingInsome17FlashFloodForecastingKnowrunoffcharacteristicsSmall,fast-responsebasinsUrbanbasinsDeforestationandfirescarareas.HailremainingonedayafterCheyenne,WYflashfloodof

1August1984FlashFloodForecastingKnowru18FlashFloodForecastingKnowledgeofrelationshipofstormspeedanddirectiontostreamflowcanbecriticalFlashFloodForecastingKnowled19FlashfloodforecastingWhathappenstothewateronthegroundisjustasimportant,andinsomecasesmoreimportant.Knowyourbasins!Flashfloodforecasting20RainfallAmountBasically,theamountofrainfallthatfallsoveranareadependson:TheINTENSITYoftherainfallTheSIZEoftherainfallareaThePROPAGATIONoftherainfallareaRainfallAmountBasically,the21RainfallAmount(cont.)Additionalconsiderationsdetermininghowmuchrainwillfallinclude:Howmuchmoistureisavailable?Willtheprecipitationbeconvectiveornot?Willcellstrainoverthesameareaornot?Willnewstormsformorcontinuetoformupstream?(regeneration)Willaboundaryorlocaltopographyprovidelocalenhancement?RainfallAmount(cont.)Additio22FlashFloodThreatfromWeaklyshearedCellsRainfallcontributionstotheflashfloodthreatare:therainfallrate,anditsduration.Rainfallrateisdependenton:theupwardmoistureflux,andespecially,precipitationefficiencyFlashFloodThreatfromWeakly23FlashfloodthreatfromweaklyshearedcellsUpwardmoisturefluxdependsonUpdraftstrengthMoisturecontentofairenteringupdraftPrecipitationefficiencyisthefractionoftotalmoistureingestedbytheupdraftthatfallsbacktothegroundasrainfall.Environmentsfavoringhighprecipitationefficiencyaremostlikelyassociatedwithflashfloodreports Flashfloodthreatfromweakly24FlashfloodthreatfromweaklyshearedcellsFavorableconditionsforhighprecipitationefficiency:Highmid-levelrelativehumidity(littledryentrainment)Deepwarmcloudlayer(increasewarmcollisioncoalescencemicrophysics)Wideupdrafts(reducedryentrainment)SeedingFlashfloodthreatfromweakly25BasicprinciplesChappell’sLaw-Part1Rainfallrate,R

EwqE=precipitationefficiencyw=ascentrateq=watervapormixingratioBasicprinciplesChappell’sLaw26EffiencyschematicEffiencyschematic27Whatcontrolsefficiency?EvaporationofcondensedwaterEnvironmentalhumidityWindshearExportationofcondensedwaterintoanvil,typicallyintheformoficeMultiplecellsEarlycellsmaybeinefficientLatercellsdevelopinanewenvironmentspectrumofclouddropletsizesLargerarealcoverageofMPSWhatcontrolsefficiency?Evapo28FlashfloodthreatfromweaklyshearedcellsWarmclouddepthincreasescollisioncoalescenceresultinginexcessiverainfallratesStormtopmaynotbehighFlashfloodthreatfromweakly29FlashfloodthreatfromweaklyshearedcellsAsignatureofadeepwarmcloudLookforsignificantincreaseinreflectivityfromthefreezingleveldowntotheLCLRadarwillunderestimaterainfallpotentialofthesestormsifbeamrisesabovetheLCLFlashfloodthreatfromweakly30Warm-rain-process-convection暖雨过程对流课件3117:53BST0.5°reflectivity(yellowthinlinerepresentthepositionofverticalcrosssection)17:53BST0.5°reflect3217:53BST17:53BST33Thesooneryoucankeyinonwarmrainprocessdominatedconvection,thequickeryoucanswitchtotropicalZ/Randhelpdetectflashflood-producingrainAnticipatingDominantWarmRainProcessConvectionEnvironmentalassessmentismostimportant,thensupplementwithreal-timedatasignaturesThesooneryoucankeyinonw34AssesstheenvironmentAssesstheenvironment35Jinan2007071808Jinan200707180836Jinan2007071814Jinan200707181437Jinan2007071820Jinan200707182038Xintai2007071808Xintai200707180839Zhengzhou2007071808Zhengzhou200707180840ComparisonofwarmrainconvectionwithintenseconvectionComparisonofwarmrainconvec41WarmRainProcesses

Real-TimeDataSignaturesLookforreflectivitystructures,satellite,andlightningdataHighreflectivityconcentratedbelowthein-cloudfreezinglevel(lowechocentroid)IRSatellite:Cloudtops“warm”LackofsignificantlightningWarmRainProcesses

Real-Time42WarmRainProcesses

RadarSignaturesKansasTurnpikeFlashFloodAug30,2003LECWarmRainProcesses

RadarSign4317:53BST0.5°reflectivity(yellowthinlinerepresentthepositionofverticalcrosssection)17:53BST0.5°reflect4417:53BST17:53BST45Warm-rain-process-convection暖雨过程对流课件46对流单体6时04分和6时10分剖面图对流单体6时04分和6时10分剖面图47Warm-rain-process-convection暖雨过程对流课件48Warm-rain-process-convection暖雨过程对流课件49Warm-rain-process-convection暖雨过程对流课件50Warm-rain-process-convection暖雨过程对流课件51WarmRainProcesses

ARecentExampleWarmRainProcesses

ARecentE52CrossSectionthroughWarm-RainSupercellCrossSectionthroughWarm-Rai53Warm-rain-process-convection暖雨过程对流课件54Warm-rain-process-convection暖雨过程对流课件55Warm-rain-process-convection暖雨过程对流课件56BasicprincipleChappell’sLaw-Part2DurationoftherainfallSizeoftherainfall“footprint”SpeedofmovementoftherainfallareaNotthesameasstormmovement!IndividualconvectivecellscanmovethroughaconvectivesystemBasicprincipleChappell’sLaw57DurationandintensityofrainDurationandintensityofrain58Warm-rain-process-convection暖雨过程对流课件591.0度速度图1.0度速度图60FlashfloodthreatfromweaklyshearedcellsFF-typedurationscanresultfromindividualstormsthathave:Slowmovement(<10kts)Largeareasofhighrainfallratesalongthemotionvector,celltraining,orAlloftheseFlashfloodthreatfromweakly61Rainfalldurationsfromindividualstormsdependon;(1)slowmovementand(2)largeareaofhighrainfallrates.Rainfalldurationsfromindivi62Warm-rain-process-convection暖雨过程对流课件63Warm-rain-process-convection暖雨过程对流课件64070021.01.27.591070021.02.27.591070021.01.19.591070021.02.19.591070021.03.27.591070021.03.19.591070021.00.37.591070021.00.41.591070021.00.57.591070021.01.27.591070021.02.27.565072422.01.27.591072422.02.27.591072422.01.19.591072422.02.19.591072422.03.27.591072422.03.19.591072422.00.37.591072422.00.41.591072422.00.57.591072422.01.27.591072422.02.27.566074206.01.27.591074206.02.27.591074206.01.19.591074206.02.19.591074206.03.27.591074206.03.19.591074206.00.37.591074206.00.41.591074206.00.57.591074206.01.27.591074206.02.27.567075355.01.27.591075355.02.27.591075355.01.19.591075355.02.19.591075355.03.27.591075355.03.19.591075355.00.37.591075355.00.41.591075355.00.57.591075355.01.27.591075355.02.27.568081703.01.27.591081703.02.27.591081703.01.19.591081703.02.19.591081703.03.27.591081703.03.19.591081703.00.37.591081703.00.41.591081703.00.57.591081703.01.27.591081703.02.27.569Warm-rain-process-convection暖雨过程对流课件70Warm-rain-process-convection暖雨过程对流课件71FlashfloodproducingconvectionSustainedconvectionisalwaysmulticellularSupercellstypicallyarenotefficientOftenmoverapidlySheared,highkineticenergyenvironments,oftenwithdeeplayersoflowhumidityabovetheboundarylayerNonsupercellstorms-bothdiscreteandlinearlyorganizedFlashfloodproducingconvecti72“CellTraining”PRODUCESASEQUENCEOFCELLS,REPEATEDLYPASSINGOVERTHESAMEAREA“CellTraining”PRODUCESASEQU73CellTrainingorRegenerationFactorsthatcanleadtoechotrainingorregenerationinthesameareainclude:Aslowmovinglow-levelboundaryorfrontAquasi-stationaryLLJAquasi-stationaryareaofupper-leveldivergenceAlow-levelboundaryalmostparalleltothemeanflow(sourceofmoistureconvergence)AlackofstrongverticalwindshearCellTrainingorRegenerationF74Warm-rain-process-convection暖雨过程对流课件75Trainingecho

76Warm-rain-process-convection暖雨过程对流课件77Warm-rain-process-convection暖雨过程对流课件78Warm-rain-process-convection暖雨过程对流课件79Warm-rain-process-convection暖雨过程对流课件80Warm-rain-process-convection暖雨过程对流课件81Warm-rain-process-convection暖雨过程对流课件82Warm-rain-process-convection暖雨过程对流课件83Warm-rain-process-convection暖雨过程对流课件84Warm-rain-process-convection暖雨过程对流课件85Warm-rain-process-convection暖雨过程对流课件86Warm-rain-process-convection暖雨过程对流课件87Warm-rain-process-convection暖雨过程对流课件88Warm-rain-process-convection暖雨过程对流课件89Warm-rain-process-convection暖雨过程对流课件90Warm-rain-process-convection暖雨过程对流课件91TrainingechoTrainingecho92SystemMovementNotsurprisingly,slowmovingsystemsusuallyproducetheheaviestrainfall!Forveryshort-termforecasts,extrapolationbasedonradarandsatelliteprovideprimaryguidanceForlongertermforecasts,modelsprovidedecentguidanceButyoustillneedtoconsidermodelcharacteristicsandlimitationsSystemMovementNotsurprisingl93CellMovementandPropagationSystemmovementdependsoncellmovementandpropagationIndividualconvectivecellsusuallymoveataround90%ofthemeanwindwithaslightdeviationtotherightPropagationisaffectedbyhowfastnewcellsformalongsomeflankofthesystemCellMovementandPropagationS94UsingRadarImagery(cont.)AnimatingimageryisusefulforDeterminingcell/systemmovementDeterminingifcellsaretrainingUsingRadarImagery(cont.)Ani95Warm-rain-process-convection暖雨过程对流课件96DiscussionQuestion

Whataresomeoftheradarlimitationsthatcanadverselyimpactyourdecisionmakingduringaheavyprecipitationevent?

AttenuationAnomalousPropagation(AP)–beampropagationRange–radarhorizonGroundclutterPoorcalibrationBeamblockageImproperZ/Rrelationship(algorithm)Hailcontamination(algorithm)BelowbeamaffectsBrightbandcontaminationPowerfailure,equipmentfailure

DiscussionQuestion Whatare97RainfallEstimationLimitationsBrightbandContaminationRadarCenteredArchofHigherRainfallAccumulationsonprouduct.OverestimaterainfallButraretoaffectconvectiveflashfloodingeventsRainfallEstimationLimitation98RainfallEstimationLimitationsHailContamination

cansignificantlyoverestimaterainfall,especiallyforhigh-endhailstormsliketheoneontherightRainfallEstimationLimitation99RainfallEstimationLimitationsDistancefromRadarHeightofreflectivityusedforcalculationmaybeHundredsoffeetOver10,000feetRainfallEstimationLimitation100RainfallEstimationLimitationsInaccurateZ/RrelationshipduetoestimationofdropsizedistributionsSameReflectivity,

VastlyDifferentRainratesRainfallEstimationLimitation101DefaultZ-RrelationshipinTropicalregionForwarmrainprocessconvection,thebestZ-RrelationisZ=230*R(1.25).ComparingZ-Rrelations.40dBz45dBz50dBzZ=300*R(1.4)12mm/h28mm/h62mm/hZ=230R(1.25)20mm/h50mm/h130mm/hItisseenfromabovecomparisonthatZ=300*R(1.4)ismuchunderestimationofheavyprecipitation.DefaultZ-RrelationshipinTr102ConditionforwarmrainprocessconvectionEnvironmentcondition:Veryhighprecipitatablewater(PW),ThinCAPE,Absenceofdryairatanylever,Lowwindshear,Verydeepwarmclouddepth,etc.Conditionforwarmrainproces1031小时累积降水(OHP78)1小时累积降水(OHP78)1043小时累积降水(THP79)3小时累积降水(THP79)105CorrectingOHPandTHPproductaccordingtodifferentZ—RrelationshipZ=230*R(1.25)CorrectingOHPandTHPproduct106THEENDThankyouTHEENDThankyou107HeavyrainfallandflashfloodHeavyrainfallandflashflood108Warm-rain-process-convection暖雨过程对流课件109FlashFloodsFlashfloodsarethenumberoneweather-relatedkillerinovermuchoftheglobeNearlyhalfofallflashfloodfatalitiesareautorelatedFlashFloodsFlashfloodsaret110Warm-rain-process-convection暖雨过程对流课件111FlashFloodDefinitionIntensePrecipitationSmallfast-responsebasins“Asituationwherethecausativeprecipitationandthesubsequentrunoffareoccurringonthesamescales.”

NATOAdvancedStudyInstitute(1999)FlashFloodDefinitionIntense112FlashfloodforecastingTheflashflood-aprototypicalhydro-meteorologicaltopicAmeteorologicalevent:rainfallAhydrologicalsettingBasinresponsetimesRunoffcharacteristicsWorkingwithhydrologists?Flashflood“guidance”isanestimateoftherainfallneededforflashfloodingtooccurFlashfloodforecastingThefla113FloodconsiderationsLargeriversliketheYangtzerespondtotherainfalloveraperiodofdaysFlashfloods-responsetorainfallisveryrapid:periodofperhaps10sofminutesSmallbasinsincomplexterrainarethosemostlikelytohaveflashfloodsUrbanfloodingcanhaveimportantimpacts-highrunoff.FloodconsiderationsLargerive11420070718JinanFlashFloodingEventJinanisthecapitalcityofShandongprovince.During12hperiodfrom14:00BST(BeijingStandardTime)18Julyto02:00BST19July2007,theaveragerainfallfrom123weatherstationsforwholeShandongprovinceis62mm.Itscapitalcity,Jinan,hasexperiencedmostsevererainfall.The12hrainfallindowntownareais140mm,mostoftherainfallwasprecipitatedduring3hperiodfrom17:20to20:20BSTon18July2007.25peoplewerekilledbytheflashfloodinginJinancity.20070718JinanFlashFlooding115AFFForecastingstrategyObtainflashfloodguidancefromhydrologists:theminimumrainfallperunittimeneededfortheoccurrenceofaflashfloodBeginwiththequestion:“Whatistheprobabilityofrainfallapproachingthatvaluetoday?”AFFForecastingstrategyObtai116Precipitationin

FlashFloodsAccumulation5-50cmover1-12hoursDurationMostlylessthan3hoursIntensity

Arid/semi-aridclimates7.5-20cm/hour(avg.11.5cm/hour)Humidclimates12.5-30cm/hour(avg.19cm/hour)CourtesyMattKelschPrecipitationin

FlashFloods117Precipitationin

FlashFloodsEnhancedIntensityPrecipitationefficiencyTropical,maritimeconnectionDeep,above-freezinglayerLow-leveljet,rapidmoisturereplenishmentLow-levelfocus(terrainandboundary)/class/FLOAT_2001/index.htmPrecipitationin

FlashFloods118ThelowleverjetThelowleverjet119ThelowleveljetThelowleveljet120ThelowleveljetfromsouthwestThelowleveljetfromsouthwe121LowleveljetfromeastandmiddleleveljetfromsouthwestLowleveljetfromeastandmi122BasinCharacteristics

inFlashFloodsSmall9-150km2(avg.55km2)70%mountainouswatersheds>50%alteredUrbanizationDeforestation,firescarsThin/impermeablesurfacelayer,Clay,rocks(lowinfiltration)Pavement(noinfiltration)Or,thick,saturatedsoillayersCourtesyMattKelschBasinCharacteristics

inFlash123FlashFloodForecastingInsomecasesthehydrologyisthedrivingforce,andsignificantflashfloodscanhappenwithunimpressiverainfall.“FlashFloodforecastingrequiresmorethanaccurateforecastsofexcessiveaccumulation.”

-MattKelsch(2000)FlashFloodForecastingInsome124FlashFloodForecastingKnowrunoffcharacteristicsSmall,fast-responsebasinsUrbanbasinsDeforestationandfirescarareas.HailremainingonedayafterCheyenne,WYflashfloodof

1August1984FlashFloodForecastingKnowru125FlashFloodForecastingKnowledgeofrelationshipofstormspeedanddirectiontostreamflowcanbecriticalFlashFloodForecastingKnowled126FlashfloodforecastingWhathappenstothewateronthegroundisjustasimportant,andinsomecasesmoreimportant.Knowyourbasins!Flashfloodforecasting127RainfallAmountBasically,theamountofrainfallthatfallsoveranareadependson:TheINTENSITYoftherainfallTheSIZEoftherainfallareaThePROPAGATIONoftherainfallareaRainfallAmountBasically,the128RainfallAmount(cont.)Additionalconsiderationsdetermininghowmuchrainwillfallinclude:Howmuchmoistureisavailable?Willtheprecipitationbeconvectiveornot?Willcellstrainoverthesameareaornot?Willnewstormsformorcontinuetoformupstream?(regeneration)Willaboundaryorlocaltopographyprovidelocalenhancement?RainfallAmount(cont.)Additio129FlashFloodThreatfromWeaklyshearedCellsRainfallcontributionstotheflashfloodthreatare:therainfallrate,anditsduration.Rainfallrateisdependenton:theupwardmoistureflux,andespecially,precipitationefficiencyFlashFloodThreatfromWeakly130FlashfloodthreatfromweaklyshearedcellsUpwardmoisturefluxdependsonUpdraftstrengthMoisturecontentofairenteringupdraftPrecipitationefficiencyisthefractionoftotalmoistureingestedbytheupdraftthatfallsbacktothegroundasrainfall.Environmentsfavoringhighprecipitationefficiencyaremostlikelyassociatedwithflashfloodreports Flashfloodthreatfromweakly131FlashfloodthreatfromweaklyshearedcellsFavorableconditionsforhighprecipitationefficiency:Highmid-levelrelativehumidity(littledryentrainment)Deepwarmcloudlayer(increasewarmcollisioncoalescencemicrophysics)Wideupdrafts(reducedryentrainment)SeedingFlashfloodthreatfromweakly132BasicprinciplesChappell’sLaw-Part1Rainfallrate,R

EwqE=precipitationefficiencyw=ascentrateq=watervapormixingratioBasicprinciplesChappell’sLaw133EffiencyschematicEffiencyschematic134Whatcontrolsefficiency?EvaporationofcondensedwaterEnvironmentalhumidityWindshearExportationofcondensedwaterintoanvil,typicallyintheformoficeMultiplecellsEarlycellsmaybeinefficientLatercellsdevelopinanewenvironmentspectrumofclouddropletsizesLargerarealcoverageofMPSWhatcontrolsefficiency?Evapo135FlashfloodthreatfromweaklyshearedcellsWarmclouddepthincreasescollisioncoalescenceresultinginexcessiverainfallratesStormtopmaynotbehighFlashfloodthreatfromweakly136FlashfloodthreatfromweaklyshearedcellsAsignatureofadeepwarmcloudLookforsignificantincreaseinreflectivityfromthefreezingleveldowntotheLCLRadarwillunderestimaterainfallpotentialofthesestormsifbeamrisesabovetheLCLFlashfloodthreatfromweakly137Warm-rain-process-convection暖雨过程对流课件13817:53BST0.5°reflectivity(yellowthinlinerepresentthepositionofverticalcrosssection)17:53BST0.5°reflect13917:53BST17:53BST140Thesooneryoucankeyinonwarmrainprocessdominatedconvection,thequickeryoucanswitchtotropicalZ/Randhelpdetectflashflood-producingrainAnticipatingDominantWarmRainProcessConvectionEnvironmentalassessmentismostimportant,thensupplementwithreal-timedatasignaturesThesooneryoucankeyinonw141AssesstheenvironmentAssesstheenvironment142Jinan2007071808Jinan2007071808143Jinan2007071814Jinan2007071814144Jinan2007071820Jinan2007071820145Xintai2007071808Xintai2007071808146Zhengzhou2007071808Zhengzhou2007071808147ComparisonofwarmrainconvectionwithintenseconvectionComparisonofwarmrainconvec148WarmRainProcesses

Real-TimeDataSignaturesLookforreflectivitystructures,satellite,andlightningdataHighreflectivityconcentratedbelowthein-cloudfreezinglevel(lowechocentroid)IRSatellite:Cloudtops“warm”LackofsignificantlightningWarmRainProcesses

Real-Time149WarmRainProcesses

RadarSignaturesKansasTurnpikeFlashFloodAug30,2003LECWarmRainProcesses

RadarSign15017:53BST0.5°reflectivity(yellowthinlinerepresentthepositionofverticalcrosssection)17:53BST0.5°reflect15117:53BST17:53BST152Warm-rain-process-convection暖雨过程对流课件153对流单体6时04分和6时10分剖面图对流单体6时04分和6时10分剖面图154Warm-rain-process-convection暖雨过程对流课件155Warm-rain-process-convection暖雨过程对流课件156Warm-rain-process-convection暖雨过程对流课件157Warm-rain-process-convection暖雨过程对流课件158WarmRainProcesses

ARecentExampleWarmRainProcesses

ARecentE159CrossSectionthroughWarm-RainSupercellCrossSectionthroughWarm-Rai160Warm-rain-process-convection暖雨过程对流课件161Warm-rain-process-convection暖雨过程对流课件162Warm-rain-process-convection暖雨过程对流课件163BasicprincipleChappell’sLaw-Part2DurationoftherainfallSizeoftherainfall“footprint”SpeedofmovementoftherainfallareaNotthesameasstormmovement!IndividualconvectivecellscanmovethroughaconvectivesystemBasicprincipleChappell’sLaw164DurationandintensityofrainDurationandintensityofrain165Warm-rain-process-convection暖雨过程对流课件1661.0度速度图1.0度速度图167FlashfloodthreatfromweaklyshearedcellsFF-typedurationscanresultfromindividualstormsthathave:Slowmovement(<10kts)Largeareasofhighrainfallratesalongthemotionvector,celltraining,orAlloftheseFlashfloodthreatfromweakly168Rainfalldurationsfromindividualstormsdependon;(1)slowmovementand(2)largeareaofhighrainfallrates.Rainfalldurationsfromindivi169Warm-rain-process-convection暖雨过程对流课件170Warm-rain-process-convection暖雨过程对流课件171070021.01.27.591070021.02.27.591070021.01.19.591070021.02.19.591070021.03.27.591070021.03.19.591070021.00.37.591070021.00.41.591070021.00.57.591070021.01.27.591070021.02.27.5172072422.01.27.591072422.02.27.591072422.01.19.591072422.02.19.591072422.03.27.591072422.03.19.591072422.00.37.591072422.00.41.591072422.00.57.591072422.01.27.591072422.02.27.5173074206.01.27.591074206.02.27.591074206.01.19.591074206.02.19.591074206.03.27.591074206.03.19.591074206.00.37.591074206.00.41.591074206.00.57.591074206.01.27.591074206.02.27.5174075355.01.27.591075355.02.27.591075355.01.19.591075355.02.19.591075355.03.27.591075355.03.19.591075355.00.37.591075355.00.41.591075355.00.57.591075355.01.27.591075355.02.27.5175081703.01.27.591081703.02.27.591081703.01.19.591081703.02.19.591081703.03.27.591081703.03.19.591081703.00.37.591081703.00.41.591081703.00.57.591081703.01.27.591081703.02.27.5176Warm-rain-process-convection暖雨过程对流课件177Warm-rain-process-convection暖雨过程对流课件178FlashfloodproducingconvectionSustainedconvectionisalwaysmulticellularSupercellstypicallyarenotefficientOftenmoverapidlySheared,highkineticenergyenvironments,oftenwithdeeplayersoflowhumidityabovetheboundarylayerNonsupercellstorms-bothdiscreteandlinearlyorganizedFlashfloodproducingconvecti179“CellTraining”PRODUCESASEQUENCEOFCELLS,REPEATEDLYPASSINGOVERTHESAMEAREA“CellTraining”PRODUCESASEQU180CellTrainingorRegenerationFactorsthatcanleadtoechotrainingorregenerationinthesameareainclude:Aslowmovinglow-levelboundaryorfrontAquasi-stationaryLLJAquasi-stationaryareaofupper-leveldivergenceAlow-levelboundaryalmostparalleltothemeanflow(sourceofmoistureconvergence)AlackofstrongverticalwindshearCellTrainingorRegenerationF181Warm-rain-process-convection暖雨过程对流课件182Trainingecho

183Warm-rain-process-convection暖雨过程对流课件184Warm-rain-process-convection暖雨过程对流课件185Warm-rain-proc

温馨提示

  • 1. 本站所有资源如无特殊说明,都需要本地电脑安装OFFICE2007和PDF阅读器。图纸软件为CAD,CAXA,PROE,UG,SolidWorks等.压缩文件请下载最新的WinRAR软件解压。
  • 2. 本站的文档不包含任何第三方提供的附件图纸等,如果需要附件,请联系上传者。文件的所有权益归上传用户所有。
  • 3. 本站RAR压缩包中若带图纸,网页内容里面会有图纸预览,若没有图纸预览就没有图纸。
  • 4. 未经权益所有人同意不得将文件中的内容挪作商业或盈利用途。
  • 5. 人人文库网仅提供信息存储空间,仅对用户上传内容的表现方式做保护处理,对用户上传分享的文档内容本身不做任何修改或编辑,并不能对任何下载内容负责。
  • 6. 下载文件中如有侵权或不适当内容,请与我们联系,我们立即纠正。
  • 7. 本站不保证下载资源的准确性、安全性和完整性, 同时也不承担用户因使用这些下载资源对自己和他人造成任何形式的伤害或损失。

评论

0/150

提交评论