Hönnun geislaljósavirkni

May 07, 2020


20200428130936_副本

Hönnun á tvöföldum megingeisla íbúð eins ás ljóskerfi stuðningskerfi


Ljóstæki tæki tæki stuðningskerfi mest mikilvægur stuðningur kerfi ljóssólkerfi

sólarorkuþættir, ljósvökvaorkunýtingarviðhorf gera hámörkun áreiðanlegrar ábyrgðar, stuðningsgjaldsheildaraflsvirkjunarframkvæmdirfjárfestingahlutfall er mjög þungt, þess vegna er virkni hönnunar, kostnaðarstjórnun þjónustulífsins mikilvægur vegur af iðnaðarmálum.


BasedontheprojectofstatepowerinvestmentYellowRiverupstreamhydropowerdevelopmentco, LTD,".. Keytechnologydevelopmentanddistributedpowerstationdemonstrationsystemofsingleaxisphotovoltaicstentsystem", thissubjectstudiesthephotovoltaicstentsysteminextremeclimateofqinghaiprovince, whichhasimportantengineeringsignificance.thispaperusedcomputationalfluiddynamicssoftwaretosimulatethestressofphotovoltaicmodulesunderwindfieldconditions, andcomparedtheresultsoffiniteelementfluidcalculationwiththeempiricalcalculationinJapan.


Comprehensiveanalysisoftheprojectarea, weatherstationobservationdata, photovoltaicmodulesbestAnglebyadjustingtheparametersoftheAngleandthewindload, onthisbasis, thedesignofthedoublemainliangpinguniaxialphotovoltaicbracketsystemanditshighAngleadjustinghydraulicpushrodmechanism, thestructureintensity, solvesthespecialenvironment, photovoltaicpanelscomponentsdeformation, fractureandotherissues; Basedonthefiniteelementmethod, thestaticanalysisofthephotovoltaicsupportsystemiscarriedoutinthispaper.


Duetoasuddenwindloadmaycausephotovoltaicpanelsvibrationdeformation, resultsinthedecreaseofthelightconversionefficiencyofphotovoltaic (PV) kerfi, thispaperappliedDavenportmodelanalysisoffluctuatingwindloadspectrum, combiningwithdoublegirderstructuremodalanalysis, candrawtheconclusion: isconducivetoimprovetheenergyconversionefficiencyofpvsystem, Að lokum, thestrengthtestofthedesigneddoublemainbeamstructureiscarriedout.