典型文献
Interaction of an unwetted liquid Li-based capillary porous system with high-density plasma
文献摘要:
This study examined the effects of plasma irradiation on an unwetted liquid lithium-based capillary porous system(Li-CPS).The Li-CPS was irradiated with high-density Ar plasma using a linear plasma device at Sichuan University for Plasma Surface Interaction.The high-speed camera,Langmuir probe,and multi-channel spectrometer were used to characterize the effects of plasma irradiation.Upon Ar plasma irradiation,liquid Li drops were formed on the surface of the unwetted Li-CPS.Immediately after this irradiation,the drops fractured and were ejected into the plasma within~20 ms scale,which is not observed before to the best of our knowledge.Related results showed that the ejection behavior of Li could effectively cool electron temperature and reduce incident heat flux by~30%and correspondingly matrix temperature~150℃,revealing an enhanced vapor shielding effect.The involved internal mechanism and physical processes deserve further investigations.
文献关键词:
中图分类号:
作者姓名:
Yingwei GAO;Zongbiao YE;Jianxing LIU;Hengxin GUO;Shuwei CHEN;Bo CHEN;Jianjun CHEN;Hongbin WANG;Fujun GOU
作者机构:
Key Laboratory of Radiation Physics and Technology,Ministry of Education,Institute of Nuclear Science and Technology,Sichuan University,Chengdu 610064,People's Republic of China;College of Physics,Sichuan University,Chengdu 610064,People's Republic of China
文献出处:
引用格式:
[1]Yingwei GAO;Zongbiao YE;Jianxing LIU;Hengxin GUO;Shuwei CHEN;Bo CHEN;Jianjun CHEN;Hongbin WANG;Fujun GOU-.Interaction of an unwetted liquid Li-based capillary porous system with high-density plasma)[J].等离子体科学和技术(英文版),2022(11):151-157
A类:
unwetted
B类:
Interaction,liquid,Li,capillary,porous,system,high,density,plasma,This,study,examined,effects,irradiation,lithium,CPS,was,irradiated,Ar,using,linear,device,Sichuan,University,Plasma,Surface,speed,camera,Langmuir,probe,multi,channel,spectrometer,were,used,characterize,Upon,drops,formed,surface,Immediately,after,this,fractured,ejected,into,within,ms,scale,which,not,observed,before,best,our,knowledge,Related,results,showed,that,ejection,behavior,could,effectively,cool,electron,temperature,reduce,incident,heat,flux,by,correspondingly,matrix,revealing,enhanced,vapor,shielding,involved,internal,mechanism,physical,processes,deserve,further,investigations
AB值:
0.613825
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