简介:对于研究非平稳信号而言,传统的傅里叶变换已不能满足需求。非平稳信号分析方法已成为信号分析领域中的一个热点问题。以模拟地震波传播过程中遇到反射界面反射实验中得到的非平稳信号为研究对象,采用HHT方法对信号进行分析。对信号进行经验模式分解(EMD)和希尔伯特变换(HT)两个步骤。根据EMD分解得到的IMF分量具有从高到低不同频率和不等带宽的特点,对信号进行重构,提高信噪比,大大提高实验中测量P波速度的精度。对信号进行三瞬参数分析,揭示了实际应用中三瞬参数对地质构造识别的优势。HHT方法适用于分析生活中普遍存在的大量非平稳信号,可将复杂的信号直接分离成从高频到低频的若干阶固有模态函数。这一方法体系从根本上摆脱了傅里叶变换理论的束缚,在实际应用中也表现出了一些独特的优势。
简介:Inthispaper,wetheoreticallyandnumericallystudyacombinedmonopole–dipolemeasurementmodetoshowitscapabilitytoovercometheissuesencounteredinconventionalsingle-wellimaging,i.e.,thelowsignal-to-noiseratioofthereflectionsandazimuthambiguity.First,theazimuthambiguity,whichexistsextensivelyinconventionalsingle-wellimaging,issolvedwithanimprovedimagingprocedureusingcombinedmonopole–dipoleloggingdatainadditiontoconventionalloggingdata.Furthermore,wedemonstratethatthedirectwavespropagatingalongtheboreholeswithstrongenergy,canbeeffectivelyeliminatedwiththeproposedcombinedmonopole–dipolemeasurementmode.Thereflectionsarethereforepredominantinthecombinedmonopole–dipoledataevenbeforethesignalsarefiltered;thus,thereflections’arrivaltimesineachreceiverareidentified,whichmayhelpminimizethedifficultiesinfilteringconventionalloggingdata.Theoptimizedprocessingflowofthecombinedmeasurementmodeloggingimageisgiveninthispaper.Theproposedcombinedmonopole–dipolemeasurementmodemayimprovetheaccuracyofsingle-wellimaging.
简介:MostcurrentprestackAVAjointinversionmethodsarebasedontheexactZoeppritzequationanditsvariousapproximations.However,theseequationsonlyreflecttherelationbetweenreflectioncoefficients,incidenceangles,andelasticparametersoneithersideoftheinterface,whichmeansthatwave-propagationeffects,suchassphericalspreading,attenuation,transmissionloss,multiples,andeventmismatchingofP-andS-waves,arenotconsideredandcannotaccuratelydescribethetruepropagationcharacteristicsofseismicwaves.ConventionalAVAinversionmethodsrequirethatthesewave-propagationeffectshavebeenfullycorrectedorattenuatedbeforeinversionbuttheserequirementscanhardlybesatisfiedinpractice.Usingaone-dimensional(1D)earthmodel,thereflectivitymethodcansimulatethefullwavefieldresponseofseismicwaves.Therefore,weproposeanonlinearmulticomponentprestackAVAjointinversionmethodbasedonthevectorizedreflectivitymethod,whichusesafastnondominatedsortinggeneticalgorithm(NSGAII)tooptimizethenonlinearmultiobjectivefunctiontoestimatemultipleparameters,suchasP-wavevelocity,S-wavevelocity,anddensity.Thisapproachisrobustbecauseitcansimultaneouslycopewithmorethanoneobjectivefunctionwithoutintroducingweightcoefficients.Modeltestsprovetheeffectivenessoftheproposedinversionmethod.Basedontheinversionresults,wefindthatthenonlinearprestackAVAjointinversionusingthereflectivitymethodyieldsmoreaccurateinversionresultsthantheinversionbyusingtheexactZoeppritzequationwhenthewave-propagationeffectsoftransmissionlossandinternalmultiplesarenotcompletelycorrected.
简介:为了对降水微物理特征测量仪(PMCS)的测量性能进行评估,利用PMCS、激光雨滴谱仪(OTT)和雨量计(Gauge)在南京地区进行了降水对比观测实验,通过分析各仪器所测得的降水强度和累计降水量,研究了PMCS和OTT在不同降水强度条件下的尺度谱及其谱参数测量的差异性。结果表明:PMCS所测得的降水强度和累计降水量较OTT小,但更接近于Gauge所测得标准降水强度和累计降水量,3种仪器降水强度结果的相关性均在0.96以上。PMCS测得的谱均值、谱方差、雷达回波强度均小于OTT所测得结果,数密度均大于OTT所测得结果,两者所测得谱参数的变化趋势具有较好的一致性。在相同降水强度范围内,PMCS和OTT所测得的雨滴尺度谱分布趋势具有较好的一致性,在雨滴大尺度段,PMCS测得的雨滴数较OTT偏少,PMCS和OTT对于雨滴的捕获性能随着降水强度增加而增强,并在达到峰值后逐渐减弱。