| 1. | Requirements for protective current transformers for transient performance 保护用电流互感器暂态特性技术要求 |
| 2. | Instrument transformers - requirements for protective current transformers for transient performance 仪表变压器.保护电流变压器瞬时特性要求 |
| 3. | Instrument transformers - part 6 : requirements for protective current transformers for transient performance 仪表用变压器.第6部分:瞬态性能保护电流变压器要求 |
| 4. | Instrument transformers ; part 6 : requirements for protective current transformers for transient performance 仪表用互感器.第6部分:瞬时特殊保护用电流互感器的要求 |
| 5. | The simulation accuracy can be improved by above model for the turbofan engine transient performance 上述模型的建立将有效的提高涡扇发动机过渡过程性能模拟程序的精度。 |
| 6. | Instrument transformers - part 6 : requirements for protective current transformers for transient performance iec 60044 - 6 : 1992 , modified ; german version en 60044 - 6 : 1999 仪表用互感器.第6部分:对具有瞬时传送特性的保护性电 |
| 7. | The calculated result shows that there are significant influences of heat transfer on the engine ' s transient performance , and the component efficiency loss caused by tip clearance changes can not be ignored 通过计算分析,零部件与气流之间的热交换对发动机过渡过程性能有显著影响;过渡过程叶尖间隙的变化引起的部件效率损失是不容忽视的。 |
| 8. | The analysis results indicate that the transient performance of pump during starting period decreases evidently under cavitation condition ; cavitation performance of the pump has close relationship with flowrate , rotational speed and impeller parameters 分析结果表明,启动过程中的汽蚀现象使混流泵瞬态性能迅速下降,汽蚀性能与流量、转速、叶轮参数等有密切关系。 |
| 9. | Using finite difference approach to simulate the transient performance of the solar pond , and study the effect of each layer ' s thickness and heat extraction on the temperature distribution , and the evolvement of the temperature profile . 4 应用有限差分法对太阳池内的瞬态行为进行模拟,研究各层厚度及取热速率等因素对温度场的影响,研究温度场的演变情况等; 4 |
| 10. | The simulation results show that the algorithms enhance the transient performance , and increase robustness against uncertainty , and improve networks utilization , and realize fairness of bandwidth allocation in steady state 最后,仿真研究结果表明,本文所提算法在性能上优于已有算法:改善了系统的暂态性能,增强了对不确定性的鲁棒性,提高了网络利用率,实现了带宽分配的公平性。 |