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有源再入式光纤陀螺的闭环实现
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作者 田赤军 皮燕燕 段宏 《中国惯性技术学报》 EI CSCD 北大核心 2010年第3期334-337,共4页
在实际应用中,陀螺动态范围一般要求在±100rad/s量级。为了达到如此大的动态范围,商用I-FOG普遍采用闭环工作方式。尽管RAI-FOG的精度比I-FOG高,可是动态范围小,因此需要闭环工作以实现大的动态范围。然而,由于RAI-FOG中有源再入... 在实际应用中,陀螺动态范围一般要求在±100rad/s量级。为了达到如此大的动态范围,商用I-FOG普遍采用闭环工作方式。尽管RAI-FOG的精度比I-FOG高,可是动态范围小,因此需要闭环工作以实现大的动态范围。然而,由于RAI-FOG中有源再入式光纤萨格奈特环的光波循环再入干涉累加的过程远比I-FOG的普通光纤萨格奈特环中简单的双向光波干涉过程复杂,迄今为止,如何实现RAI-FOG的闭环工作仍是尚待解决的关键问题。本文研究了RAI-FOG的闭环原理和论证了利用方波调制阶梯波反馈方案实现有源再入式光纤陀螺闭环工作的可行性。设计、制作并调试成功了实现闭环有源再入式光纤陀螺的数字电路,建立了光纤环长为200m的闭环有源再入式光纤陀螺的实验系统。并利用闭环有源再入式光纤陀螺实验系统实现了0.67°/h的传感精度,比相同实验条件下的闭环干涉式光纤陀螺的精度提升了3倍。 展开更多
关键词 闭环 方波调制 阶梯波反馈 有源再入式光纤陀螺 精度
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Effect of water injection on the cavitation control:experiments on a NACA66(MOD)hydrofoil 被引量:5
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作者 W.Wang T.Tang +4 位作者 Q.D.Zhang X.F.Wang Z.Y.An T.H.Tong Z.J.Li 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2020年第5期999-1017,I0001,共20页
The objective of this work is to investigate experimentally controlling cavitating flow over NACA66(MOD)hydrofoils by means of an active water injection along its suction surface.The continuous water vertically jets o... The objective of this work is to investigate experimentally controlling cavitating flow over NACA66(MOD)hydrofoils by means of an active water injection along its suction surface.The continuous water vertically jets out of the chamber inside the hydrofoil through evenly distributed surface holes.Experiments were carried out in cavitation water tunnel.using high-speed visualization technology and the particle image velocimetry(PIV)system to study the sheetlcloud cavity behaviors.We studied the effects of this active control on cavity evolution with four kinds of jet flow at two different jet positions.We analyzed the effect of water injection on the mechanism of the cavitating flow control.The results were all compared with that for the original hydrofoil without jet and show that the active jet can effectively suppress the sheet/cloud cavitation characterized by shrinking the attached cavity size and breaking the large-scaled cloud sheding vortex cavity into small-scaled ones.The optimum effectiveness of cavitation suppression is affected by the jet flow rates and jet positions.The water injection at flow rate coefficient 0.0245 with the jet position of 0.45C reduces the maximum sheet cavity length by 79.4%and the cavity shedding is diminished completely,which gives the most superior effect of sheet cavitation suppression.The jet blocks the re-entrant jet moving upstream and weakens the power of re-entrant jet and thus restrains the cavitation development effectively and stabilizes the flow field. 展开更多
关键词 Cavitation active control Sheet/cloud cavitation.Water injection re-entrant jet
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