Owing to the complex lithology of unconventional reservoirs,field interpreters usually need to provide a basis for interpretation using logging simulation models.Among the various detection tools that use nuclear sour...Owing to the complex lithology of unconventional reservoirs,field interpreters usually need to provide a basis for interpretation using logging simulation models.Among the various detection tools that use nuclear sources,the detector response can reflect various types of information of the medium.The Monte Carlo method is one of the primary methods used to obtain nuclear detection responses in complex environments.However,this requires a computational process with extensive random sampling,consumes considerable resources,and does not provide real-time response results.Therefore,a novel fast forward computational method(FFCM)for nuclear measurement that uses volumetric detection constraints to rapidly calculate the detector response in various complex environments is proposed.First,the data library required for the FFCM is built by collecting the detection volume,detector counts,and flux sensitivity functions through a Monte Carlo simulation.Then,based on perturbation theory and the Rytov approximation,a model for the detector response is derived using the flux sensitivity function method and a one-group diffusion model.The environmental perturbation is constrained to optimize the model according to the tool structure and the impact of the formation and borehole within the effective detection volume.Finally,the method is applied to a neutron porosity tool for verification.In various complex simulation environments,the maximum relative error between the calculated porosity results of Monte Carlo and FFCM was 6.80%,with a rootmean-square error of 0.62 p.u.In field well applications,the formation porosity model obtained using FFCM was in good agreement with the model obtained by interpreters,which demonstrates the validity and accuracy of the proposed method.展开更多
"中国天眼"——500 m口径球面射电望远镜(Five hundred meter aperture spherical radio telescope,FAST)日前已投入使用,其独创的光机电一体化馈源支撑方案使得结构重量降低2个数量级。在6根柔索对馈源舱进行初步定位的基础..."中国天眼"——500 m口径球面射电望远镜(Five hundred meter aperture spherical radio telescope,FAST)日前已投入使用,其独创的光机电一体化馈源支撑方案使得结构重量降低2个数量级。在6根柔索对馈源舱进行初步定位的基础上,舱内的AB轴机构和精调Stewart平台支撑起馈源平台,并进行实时位姿补偿以实现馈源对天文目标的高精度跟踪。为避免通过各级驱动关节反馈值计算馈源平台位姿时,不能反映杆件弹性变形、铰链间隙引入的馈源平台误差,提出一种基于线驱动并联机构的馈源平台6自由度位姿直接测量方法,研究了测量系统的数学模型,利用机构构型的特点简化了线驱动并联机构的位姿正解算法。通过将简化后的位姿正解算法与传统6自由度机构位姿正解算法进行对比,验证了该方法的有效性和实时性;进一步分析了基于该方法的测量系统误差来源,得出了机构参数的误差映射关系。数值仿真结果表明:基于线驱动并联机构6自由度位姿测量系统具有误差平均效应,通过拉线连接点优化布局能够达到0.5 mm和0.025°的测量精度。展开更多
A fast tool servo (FTS) system is developed for the fabrication of non-rotationally symmetric micro-structured surfaces using single-point diamond turning machines.The constructed FTS employs a piezoelectric tube actu...A fast tool servo (FTS) system is developed for the fabrication of non-rotationally symmetric micro-structured surfaces using single-point diamond turning machines.The constructed FTS employs a piezoelectric tube actuator (PZT) to actuate the diamond tool and a capacitive probe as the feedback sensor.To compensate the inherent nonlinear hysteresis behavior of the piezoelectric actuator,Proportional Integral (PI) feedback control is implemented.Besides,a feed-forward control based on a simple feed-forward predictor has been added to achieve better tracking performance.Experimental results indicate that error motions in the performance of the system caused by hysteresis can be reduced greatly and the micro-structured surface is successfully fabricated by implementing the FTS.展开更多
基金This work is supported by National Natural Science Foundation of China(Nos.U23B20151 and 52171253).
文摘Owing to the complex lithology of unconventional reservoirs,field interpreters usually need to provide a basis for interpretation using logging simulation models.Among the various detection tools that use nuclear sources,the detector response can reflect various types of information of the medium.The Monte Carlo method is one of the primary methods used to obtain nuclear detection responses in complex environments.However,this requires a computational process with extensive random sampling,consumes considerable resources,and does not provide real-time response results.Therefore,a novel fast forward computational method(FFCM)for nuclear measurement that uses volumetric detection constraints to rapidly calculate the detector response in various complex environments is proposed.First,the data library required for the FFCM is built by collecting the detection volume,detector counts,and flux sensitivity functions through a Monte Carlo simulation.Then,based on perturbation theory and the Rytov approximation,a model for the detector response is derived using the flux sensitivity function method and a one-group diffusion model.The environmental perturbation is constrained to optimize the model according to the tool structure and the impact of the formation and borehole within the effective detection volume.Finally,the method is applied to a neutron porosity tool for verification.In various complex simulation environments,the maximum relative error between the calculated porosity results of Monte Carlo and FFCM was 6.80%,with a rootmean-square error of 0.62 p.u.In field well applications,the formation porosity model obtained using FFCM was in good agreement with the model obtained by interpreters,which demonstrates the validity and accuracy of the proposed method.
文摘"中国天眼"——500 m口径球面射电望远镜(Five hundred meter aperture spherical radio telescope,FAST)日前已投入使用,其独创的光机电一体化馈源支撑方案使得结构重量降低2个数量级。在6根柔索对馈源舱进行初步定位的基础上,舱内的AB轴机构和精调Stewart平台支撑起馈源平台,并进行实时位姿补偿以实现馈源对天文目标的高精度跟踪。为避免通过各级驱动关节反馈值计算馈源平台位姿时,不能反映杆件弹性变形、铰链间隙引入的馈源平台误差,提出一种基于线驱动并联机构的馈源平台6自由度位姿直接测量方法,研究了测量系统的数学模型,利用机构构型的特点简化了线驱动并联机构的位姿正解算法。通过将简化后的位姿正解算法与传统6自由度机构位姿正解算法进行对比,验证了该方法的有效性和实时性;进一步分析了基于该方法的测量系统误差来源,得出了机构参数的误差映射关系。数值仿真结果表明:基于线驱动并联机构6自由度位姿测量系统具有误差平均效应,通过拉线连接点优化布局能够达到0.5 mm和0.025°的测量精度。
基金Funded by the National High-tech R&D Program ("863" Program) of China (No.2006AA04Z314)
文摘A fast tool servo (FTS) system is developed for the fabrication of non-rotationally symmetric micro-structured surfaces using single-point diamond turning machines.The constructed FTS employs a piezoelectric tube actuator (PZT) to actuate the diamond tool and a capacitive probe as the feedback sensor.To compensate the inherent nonlinear hysteresis behavior of the piezoelectric actuator,Proportional Integral (PI) feedback control is implemented.Besides,a feed-forward control based on a simple feed-forward predictor has been added to achieve better tracking performance.Experimental results indicate that error motions in the performance of the system caused by hysteresis can be reduced greatly and the micro-structured surface is successfully fabricated by implementing the FTS.