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1)  deflection current
偏转电流
2)  slip/current deviation
转差率/电流偏差
3)  deflector coil current
偏转线圈电流
4)  rotor current vector angle deviation
转子电流偏差角
1.
By further study on the previous position-observing schemes for doubly fed induction generators(DFIGs),an improved observing scheme based on rotor current vector angle deviation(RCVAD)is proposed.
提出一种基于转子电流偏差角的双馈感应电机(DFIG)闭环速度观测方案。
5)  jet deflection
射流偏转
1.
The flow-field numerical simulation data at burner region of a tangentially fired PC boiler whose burners are arranged in six corners is used, the influence of pressure distribution at burner region on jet deflection was studied, the old case and improved case of burner flow-field was contrasted and analyzed.
利用某六角切圆燃烧煤粉炉燃烧器区域流场的数值模拟数据,研究燃烧器区域静压力分布对射流偏转的影响,并针对燃烧器改进前后的流场分布进行比较分析。
2.
In this paper the authors have carefully measured the flow fields in the burner zone and pressure distribution along the adjacent wall on an isothermal model, and studied the effect of the structure and operational parameters of jet burner on the aerodynamic field in the furnace, and obtained the factors of leading to jet deflection.
实测结果表明:①燃烧器射流根部压差较大,随着射流前展,射流两侧的压差明显减小;②燃烧器射流的几何轴线与前墙夹角α增大时,射流两侧的压差就减小;③随着燃烧器高宽比(h/b) 的增大,壁面区域相对压力的绝对值增大,气流越易贴壁;④燃烧器只开1 个喷口时,射流偏转比开4 个喷口时的小得多。
3.
The research on burner jet deflection in tangential firing frunace at present is introduced in this article at first.
首先介绍了在切圆燃烧炉膛内燃烧器流偏转方面的研究现状 ,然后根据对炉内流动工况的观测 ,提出切圆燃烧炉膛内燃烧器射流的运动在本质上是横向气流射流的运动 ,在分析这个流动模型的卷吸及所受作用基础上推导出射流偏转的计算方法 ,并针对典型 6 0 0 MW的炉膛进行了计算及试验验证 。
6)  upstream deflexion
迎流偏转
补充资料:标准冲击电流波形(见冲击电流发生器)


标准冲击电流波形(见冲击电流发生器)
standard impulse current wave form

  blaozhun ehonglld}0n4一u box]ng标准冲击电流波形(standard impulse currentwave form)见冲击电流发生器。
  
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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