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基于光子晶体光纤的在线压力监测技术 被引量:2
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作者 张毅 庄志 陈颖 《传感技术学报》 CAS CSCD 北大核心 2015年第5期613-616,共4页
为了监测紧凑结构件的内部层间压力,提出一种采用新型材料保偏光子晶体光纤为敏感单元的嵌入式压力在线检测技术。建立了传感模型,采用Sagnac干涉技术组建检测系统,并进行了实验研究。通过实验验证,检测系统输出干涉峰值的移动量与光纤... 为了监测紧凑结构件的内部层间压力,提出一种采用新型材料保偏光子晶体光纤为敏感单元的嵌入式压力在线检测技术。建立了传感模型,采用Sagnac干涉技术组建检测系统,并进行了实验研究。通过实验验证,检测系统输出干涉峰值的移动量与光纤横向压力成线性关系,传感器可检测压力范围为0~10 k N,压力灵敏系数为0.441 4 nm/k N,传感器精度2.6%,且能明显观测到光纤上方垫层材料的松弛效应。试验验证敏感单元的重复性能良好,且温度敏感系数仅为-11.8 pm/℃,使得该类传感器具有良好的抗温度干扰性及工程实际应用性。 展开更多
关键词 光纤压力传感器 光子晶体光纤 SAGNAC干涉仪 在线监测 应力松弛 低温度敏感性
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‘Initial’ Soil Moisture Effects on the Climate in China——A Regional Climate Model Study
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作者 SHI Xueli 《Journal of Ocean University of China》 SCIE CAS 2009年第2期111-120,共10页
In this study,the effects of ‘initial’ soil moisture(SM) in arid and semi-arid Northwestern China on subsequent climate were investigated with a regional climate model. Besides the control simulations(denoted as CTL... In this study,the effects of ‘initial’ soil moisture(SM) in arid and semi-arid Northwestern China on subsequent climate were investigated with a regional climate model. Besides the control simulations(denoted as CTL),a series of sensitivity experiments were conducted,including the DRY and WET experiments,in which the simulated ‘initial’ SM over the region 30 –50°N,75 –105°E was only 5% and 50%,and up to 150% and 200% of the simulated value in the CTL,respectively. The results show that SM change can modify the subsequent climate in not only the SM-change region proper but also the far downstream regions in Eastern and even Northeastern China. The SM-change effects are generally more prominent in the WET than in the DRY experiments. After the SM is initially increased,the SM in the SM-change region is always higher than that in the CTL,the latent(sensible) heat flux there increases(decreases),and the surface air temperature decreases. Spatially,the most prominent changes in the WET experiments are surface air temperature decrease,geopotential height decrease and corresponding abnormal changes of cyclonic wind vectors at the mid-upper troposphere levels. Generally opposite effects exist in the DRY experiments but with much weaker intensity. In addition,the differences between the results obtained from the two sets of sensitivity experiments and those of the CTL are not always consistent with the variation of the initial SM. Being different from the variation of temperature,the rainfall modifications caused by initial SM change are not so distinct and in fact they show some common features in the WET and DRY experiments. This might imply that SM is only one of the factors that impact the subsequent climate,and its effect is involved in complex processes within the atmosphere,which needs further investigation. 展开更多
关键词 soil moisture regional climate numerical model experiments
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