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无线电控制技术在煤塔漏嘴及压风阀上的应用
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作者 宋健 孔哲 《莱钢科技》 2015年第1期19-21,共3页
对生产过程中煤塔漏嘴、压风阀传统的电磁控制方式和改造后的无线电控制方式进行了详细介绍。改造后,无线电控制方式不但准确,而且省去了电磁铁和电磁接近开关,控制线路简单,生产成本大大降低,故障时间得到有效控制。
关键词 电磁控制 无线控制 煤塔漏嘴 压风阀 单片机
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Feasibility of replacing the 3-coach with a 1.5-coach grouping trainmodel in wind tunnel experiment at different yaw angles 被引量:2
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作者 YANG Bo XIONG Xiao-hui +3 位作者 HE Zhao LI Xiao-bai XIE Peng-hui TANG Ming-zan 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第6期2062-2073,共12页
The effects of different yaw angles on the aerodynamic performance of city electric multiple units(EMUs)were investigated in a wind tunnel using a 1:16.8 scaled model.Pressure scanning valve and six-component box-type... The effects of different yaw angles on the aerodynamic performance of city electric multiple units(EMUs)were investigated in a wind tunnel using a 1:16.8 scaled model.Pressure scanning valve and six-component box-type aerodynamic balance were used to test the pressure distribution and aerodynamic force of the head car respectively from the 1.5-and 3-coach grouping city EMU models.Meanwhile,the effects of the yaw angles on the pressure distribution of the streamlined head as well as the aerodynamic forces of the train were analyzed.The experimental results showed that the pressure coefficient was the smallest at the maximum slope of the main shape-line.The side force coefficient and pressure coefficient along the head car cross-section were most affected by crosswind when the yaw angle was 55°,and replacing a 3-coach grouping with a 1.5-coach grouping had obvious advantages for wind tunnel testing when the yaw angle was within 24.2°.In addition,the relative errors of lift coefficient C_(L),roll moment coefficient C_(Mx),side force coefficient C_(S),and drag coefficient C_(D) between the 1.5-and 3-coach cases were below 5.95%,which all met the requirements of the experimental accuracy. 展开更多
关键词 wind tunnel electric multiple unit pressure coefficient yaw angle scanning valve 1.5-coach grouping
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