In order to realize visualization of three-dimensional data field (TDDF) in instrument, two methods of visualization of TDDF and the usual manner of quick graphic and image processing are analyzed. And how to use Op...In order to realize visualization of three-dimensional data field (TDDF) in instrument, two methods of visualization of TDDF and the usual manner of quick graphic and image processing are analyzed. And how to use OpenGL technique and the characteristic of analyzed data to construct a TDDF, the ways of reality processing and interactive processing are described. Then the medium geometric element and a related realistic model are constructed by means of the first algorithm. Models obtained for attaching the third dimension in three-dimensional data field are presented. An example for TDDF realization of machine measuring is provided. The analysis of resultant graphic indicates that the three-dimensional graphics built by the method developed is featured by good reality, fast processing and strong interaction展开更多
Extremely low frequency (ELF) magnetic field susceptibility is an index of visual display unit (VDU) quality and performance. This paper provided field measured data on the susceptibility for a large variety of VDUs. ...Extremely low frequency (ELF) magnetic field susceptibility is an index of visual display unit (VDU) quality and performance. This paper provided field measured data on the susceptibility for a large variety of VDUs. A test rig was built to study the susceptibility of VDUs to magnetic fields at fundamental and third harmonic frequencies. It was found that the susceptibility level is largely dependent on refresh rate of the VDU and the orientation of the external ELF field. It was also found that the VDU susceptibility is significantly increased in the presence of harmonic frequency magnetic fields. About 30% of the tested samples have susceptibility levels higher than that stated in IEC 1000-4-8 standard.展开更多
本文以电弧参数测量和光学流动显示相结合的方法,对六氟化硫(SF_6)电弧的热边界区进行了研究。在实验中拍摄了电弧拉出喷口时的形象与气流场光学图象。运用 Abel 转换方法计算了热边界区内气体密度与温度分布。研究发现,在燃弧绝大部分...本文以电弧参数测量和光学流动显示相结合的方法,对六氟化硫(SF_6)电弧的热边界区进行了研究。在实验中拍摄了电弧拉出喷口时的形象与气流场光学图象。运用 Abel 转换方法计算了热边界区内气体密度与温度分布。研究发现,在燃弧绝大部分时间,热边界区阻塞喷口,造成流量严重下降。同时,热区气体吸收了大量电弧能量。干涉图片还显示,热区直径在随电流变化中有明显滞止现象。热滞止效应使热区在电流零后可维持较长时间,从而造成了对介质恢复过程的影响。展开更多
基金This project is supported by National Natural Science Foundation of China (No.50405009)
文摘In order to realize visualization of three-dimensional data field (TDDF) in instrument, two methods of visualization of TDDF and the usual manner of quick graphic and image processing are analyzed. And how to use OpenGL technique and the characteristic of analyzed data to construct a TDDF, the ways of reality processing and interactive processing are described. Then the medium geometric element and a related realistic model are constructed by means of the first algorithm. Models obtained for attaching the third dimension in three-dimensional data field are presented. An example for TDDF realization of machine measuring is provided. The analysis of resultant graphic indicates that the three-dimensional graphics built by the method developed is featured by good reality, fast processing and strong interaction
文摘Extremely low frequency (ELF) magnetic field susceptibility is an index of visual display unit (VDU) quality and performance. This paper provided field measured data on the susceptibility for a large variety of VDUs. A test rig was built to study the susceptibility of VDUs to magnetic fields at fundamental and third harmonic frequencies. It was found that the susceptibility level is largely dependent on refresh rate of the VDU and the orientation of the external ELF field. It was also found that the VDU susceptibility is significantly increased in the presence of harmonic frequency magnetic fields. About 30% of the tested samples have susceptibility levels higher than that stated in IEC 1000-4-8 standard.
文摘本文以电弧参数测量和光学流动显示相结合的方法,对六氟化硫(SF_6)电弧的热边界区进行了研究。在实验中拍摄了电弧拉出喷口时的形象与气流场光学图象。运用 Abel 转换方法计算了热边界区内气体密度与温度分布。研究发现,在燃弧绝大部分时间,热边界区阻塞喷口,造成流量严重下降。同时,热区气体吸收了大量电弧能量。干涉图片还显示,热区直径在随电流变化中有明显滞止现象。热滞止效应使热区在电流零后可维持较长时间,从而造成了对介质恢复过程的影响。