O43 2002031616近场光学中的分子动力学研究以及在生物医学中的应用=Dynamic enhanced vibrational spectroscopy ofmolecules in near field and biomedical applications[刊,中]/窦晓鸣,曹庄琪,赵海鹰(上海交通大学.上海(200030))//...O43 2002031616近场光学中的分子动力学研究以及在生物医学中的应用=Dynamic enhanced vibrational spectroscopy ofmolecules in near field and biomedical applications[刊,中]/窦晓鸣,曹庄琪,赵海鹰(上海交通大学.上海(200030))//中国计量学院学报.-2001,12(2).-86从理论和实验上论证了纳米分散系统中生物分子与金属纳米粒子相互作用过程以及系统静电平衡机理和近场中分子动力学现象之间的关系;光与金属纳米微粒子相互作用过程中的纳米近场现象以及纳米近场的能量分布规律:生物分子在光。展开更多
O431.2 2002042401双模压缩真空与 A 型三能级原子相互作用模型的腔场谱=Cavity - field spectra of models for dual -module compressing vacuum state and Λ- typethree-level atom interactions[刊,中]/高云峰,史舒人(聊城师范学...O431.2 2002042401双模压缩真空与 A 型三能级原子相互作用模型的腔场谱=Cavity - field spectra of models for dual -module compressing vacuum state and Λ- typethree-level atom interactions[刊,中]/高云峰,史舒人(聊城师范学院教育工程系.山东,聊城(252059)),冯健(中科院安徽光机所激光光谱学开放研究实验室.展开更多
O431 98010001一种计算量子拍讯号强度的新方法=A newmethod for calculating the signal intensity ofquantum beats[刊,中]/胡振华(武汉交通科技大学.湖北,武汉(430063))//发光学报.—1997,18(3).—195-198运用密度矩阵方程推导了V型...O431 98010001一种计算量子拍讯号强度的新方法=A newmethod for calculating the signal intensity ofquantum beats[刊,中]/胡振华(武汉交通科技大学.湖北,武汉(430063))//发光学报.—1997,18(3).—195-198运用密度矩阵方程推导了V型三能级系统的荧光量子拍讯号强度,并对其结果进行了分析和讨论。参8(常唯)O431 98010002偶奇qs相干态的非经典特性=Nonclassical propertiesof even and odd qs-coherent states[刊,中]/王继锁,孙长勇(聊城师范学院物理系.山东,聊城(252059)),赵铭健(临沂师范专科学校.山东。展开更多
Based on the working principle and the damping characteristic of hydraulic shock absorber, a fluid structure interaction method was presented, which was used to analyze the microcosmic and high-frequency processing me...Based on the working principle and the damping characteristic of hydraulic shock absorber, a fluid structure interaction method was presented, which was used to analyze the microcosmic and high-frequency processing mechanism of fluid structure interaction between circulation valve and liquid of hydraulic shock absorber. The fluid mesh distortion was controlled by the CEL language, and the fluid struc^tre interaction mathematical model was established. The finite element model was established by ANSYS CFX software and was analyzed by dynamic mesh technique. The local sensitive computational area was meshed by prismatic grid, which could reduce the negative volume problem during the simulation. The circulation valve and liquid of hydraulic shock absorber were simulated and analyzed under the condition of sinusoidal inlet velocity loads. Flow characteristic and dynamics characteristic were obtained. The pressure distribution and the displacement of circulation value were obtained, and the acceleration curve of circulation valve was simulated and analyzed. The conformity of the final simulation results with the experimental datum indicates that this method is accurate and reliable to analyze the dynamics characteristic between circulation valve and liquid of hydraulic shock absorber, which can provide a theoretical foundation for optimizing hydraulic shock absorber in the future.展开更多
文摘O43 2002031616近场光学中的分子动力学研究以及在生物医学中的应用=Dynamic enhanced vibrational spectroscopy ofmolecules in near field and biomedical applications[刊,中]/窦晓鸣,曹庄琪,赵海鹰(上海交通大学.上海(200030))//中国计量学院学报.-2001,12(2).-86从理论和实验上论证了纳米分散系统中生物分子与金属纳米粒子相互作用过程以及系统静电平衡机理和近场中分子动力学现象之间的关系;光与金属纳米微粒子相互作用过程中的纳米近场现象以及纳米近场的能量分布规律:生物分子在光。
文摘O431.2 2002042401双模压缩真空与 A 型三能级原子相互作用模型的腔场谱=Cavity - field spectra of models for dual -module compressing vacuum state and Λ- typethree-level atom interactions[刊,中]/高云峰,史舒人(聊城师范学院教育工程系.山东,聊城(252059)),冯健(中科院安徽光机所激光光谱学开放研究实验室.
文摘O431 98010001一种计算量子拍讯号强度的新方法=A newmethod for calculating the signal intensity ofquantum beats[刊,中]/胡振华(武汉交通科技大学.湖北,武汉(430063))//发光学报.—1997,18(3).—195-198运用密度矩阵方程推导了V型三能级系统的荧光量子拍讯号强度,并对其结果进行了分析和讨论。参8(常唯)O431 98010002偶奇qs相干态的非经典特性=Nonclassical propertiesof even and odd qs-coherent states[刊,中]/王继锁,孙长勇(聊城师范学院物理系.山东,聊城(252059)),赵铭健(临沂师范专科学校.山东。
基金Project(51275542) supported by the National Natural Science Foundation of Chinaproject(CDJXS12110010) supported by the Fundamental Research Funds for the Central Universities of China
文摘Based on the working principle and the damping characteristic of hydraulic shock absorber, a fluid structure interaction method was presented, which was used to analyze the microcosmic and high-frequency processing mechanism of fluid structure interaction between circulation valve and liquid of hydraulic shock absorber. The fluid mesh distortion was controlled by the CEL language, and the fluid struc^tre interaction mathematical model was established. The finite element model was established by ANSYS CFX software and was analyzed by dynamic mesh technique. The local sensitive computational area was meshed by prismatic grid, which could reduce the negative volume problem during the simulation. The circulation valve and liquid of hydraulic shock absorber were simulated and analyzed under the condition of sinusoidal inlet velocity loads. Flow characteristic and dynamics characteristic were obtained. The pressure distribution and the displacement of circulation value were obtained, and the acceleration curve of circulation valve was simulated and analyzed. The conformity of the final simulation results with the experimental datum indicates that this method is accurate and reliable to analyze the dynamics characteristic between circulation valve and liquid of hydraulic shock absorber, which can provide a theoretical foundation for optimizing hydraulic shock absorber in the future.