基于離散元法的生物質(zhì)熱解螺旋抄板優(yōu)化設(shè)計(jì)與試驗(yàn)
中圖分類號(hào):S776 文獻(xiàn)標(biāo)識(shí)碼:A DOI:10.7525/j.issn.1006-8023.2025.04.017
Abstract: Inrecent years,biomass pyrolysis equipment has emergedasafocal pointofresearch inthe globalenergy sector.To ackle challenges such asuneven material heating andaccumulation at the tail section commonlyobserved in fixed-bed pyrolysis systems,this study focuses onoptimizing andanalyzing theperformanceof spiral combined flights,a keycomponent in fixed-bedreactors.Anovel variable-pitch combinedflightsstructure was designed,anditscritical parameters were systematicallydetermined.Using Altair EDEM simulations,the effects of rotational speedand equipment inclination angleon the discharge rate were evaluated,and the simulationoutcomes were validated through experiments. Simulationresults demonstratedthatthe variable-pitchcombinedflightsstructure effctivelyliftedmaterialsandredirected tail-end accumulation towards the discharge outlet,enabling uniform heating andresolving the isue of particle buildupatthetail.Meanwhile,theinclinationangle exertedasignificantlystronger influenceonthedischargerate,with a between-group to within-group mean squareratioof 240.OO,farsurpassing theratioof 25.60 observedforrotational speed.Experimental results aligned closely with the simulations,yielding a correlation coeficientof 0.998 7.
Keywords:Biomass;spiralcombined flight;discrete elements;optimization design;correlation analysis
0引言
機(jī)問題,減少溫室氣體排放,并有助于減輕全球變暖和環(huán)境污染等問題[1]。(剩余10883字)
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