Chinese Space Science and Technology ›› 2015, Vol. 35 ›› Issue (3): 44-.doi: 10.3780/j.issn.1000-758X.2015.03.006
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ZHOUZhicheng,LIFeng,HUANGHua,XUHangyan,TANLixin
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Abstract: Athreedimensionalnumericalmodelofanindividualpressurevesselwasdevelopedbasedonthe80AhnickelhydrogenbatteryusedforGEOcommunicationsatellites.Themodel,includingthemaincomponentsofabatteryincludingthebatteryshellandelectrodestack,wasutilizedtosimulatethetransientflowfieldoftheelectrolyteunderzerogravitycondition,byusingthecomputationalfluiddynamics(CFD)technology.Thecomparisonsofthesimulationresultswithdifferentboundaryconditionsshowthattheflowvelocityoftheelectrolytefromshelltotheelectrodestackwasdecidedbythewettabilityoftheelectrolyte.Addingroutesfortheelectrolyteflowingfromthebottomacmeandtheupperacmetotheelectrodestackcanimprovetheperformanceofthenickelhydrogenbattery.
Key words: Nickelhydrogenbattery;Electrolyte, Contactangle, Computationalfluiddynamics;Satellite
ZHOUZhicheng,LIFeng,HUANGHua,XUHangyan,TANLixin. NumericalSimulationofElectrolyteMovinginNickelHydrogenBatteryofSatellite[J]. Chinese Space Science and Technology, 2015, 35(3): 44-.
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URL: https://journal26.magtechjournal.com/kjkxjs/EN/10.3780/j.issn.1000-758X.2015.03.006
https://journal26.magtechjournal.com/kjkxjs/EN/Y2015/V35/I3/44