提出一种保偏光纤环和Y波导调制器直接耦合偏振轴测量方法。设计并搭建了偏振轴在线检测系统,通过将检测光路插入到直接耦合工艺过程中,使空间中平行的Y波导和光纤组件端面同时清晰成像于CCD像面;通过图像处理判断两端面边缘相互平行关...提出一种保偏光纤环和Y波导调制器直接耦合偏振轴测量方法。设计并搭建了偏振轴在线检测系统,通过将检测光路插入到直接耦合工艺过程中,使空间中平行的Y波导和光纤组件端面同时清晰成像于CCD像面;通过图像处理判断两端面边缘相互平行关系获取两者偏振轴的角度偏差。实验结果表明,搭建的系统用于Y波导和保偏光纤偏振轴对准时,系统实测值与理论值能较好地吻合,且系统测量精度在1°之内,对应于偏振轴角度误差产生的尾纤输出串音优于-35 d B,证明了方法的可行性。展开更多
Conventional loggings provide the essential data for AVO (Amplitude-Versus- Offset) analysis in rock physics, which can build a bridge linking petrophysics and seismic data. However, if some complex fluid systems, s...Conventional loggings provide the essential data for AVO (Amplitude-Versus- Offset) analysis in rock physics, which can build a bridge linking petrophysics and seismic data. However, if some complex fluid systems, such as serious fluid invasion to formation, low resistivity response or complicated water salinity etc. exist in reservoirs, the conventional logs may fail to provide quality data, leading to calculated errors for elastic properties so worse that the AVO results cannot match the seismic data. To overcome such difficulties in Tertiary reservoirs of Bohai Gulf in China, we utilized both conventional logs and CMR- MDT tool (Combinable Magnetic Resonance and Modular Formation Dynamics Tester) to perform formation evaluation and reservoir descriptions. Our research proposes, it allows petrophysicists to acquire reservoir parameters (e.g. porosity, permeability, water saturation, bound fluids and pore pressure etc), and then these results to combine with core analysis based on laboratory's measurements to carry out a further rock physics study and AVO analysis in seismic domain.展开更多
文摘提出一种保偏光纤环和Y波导调制器直接耦合偏振轴测量方法。设计并搭建了偏振轴在线检测系统,通过将检测光路插入到直接耦合工艺过程中,使空间中平行的Y波导和光纤组件端面同时清晰成像于CCD像面;通过图像处理判断两端面边缘相互平行关系获取两者偏振轴的角度偏差。实验结果表明,搭建的系统用于Y波导和保偏光纤偏振轴对准时,系统实测值与理论值能较好地吻合,且系统测量精度在1°之内,对应于偏振轴角度误差产生的尾纤输出串音优于-35 d B,证明了方法的可行性。
文摘Conventional loggings provide the essential data for AVO (Amplitude-Versus- Offset) analysis in rock physics, which can build a bridge linking petrophysics and seismic data. However, if some complex fluid systems, such as serious fluid invasion to formation, low resistivity response or complicated water salinity etc. exist in reservoirs, the conventional logs may fail to provide quality data, leading to calculated errors for elastic properties so worse that the AVO results cannot match the seismic data. To overcome such difficulties in Tertiary reservoirs of Bohai Gulf in China, we utilized both conventional logs and CMR- MDT tool (Combinable Magnetic Resonance and Modular Formation Dynamics Tester) to perform formation evaluation and reservoir descriptions. Our research proposes, it allows petrophysicists to acquire reservoir parameters (e.g. porosity, permeability, water saturation, bound fluids and pore pressure etc), and then these results to combine with core analysis based on laboratory's measurements to carry out a further rock physics study and AVO analysis in seismic domain.