期刊文献+
共找到4篇文章
< 1 >
每页显示 20 50 100
流体动力学调制下的动态光流控波导及其生化应用 被引量:1
1
作者 梁莉 吴唯 +1 位作者 刘佳伟 杨奕 《华南师范大学学报(自然科学版)》 CAS 北大核心 2015年第2期21-26,共6页
基于流体动力学调制,探究光流控波导的独特光学特性及其生化应用.将微流体独特的输运、扩散、离心性质应用到光波导设计中,赋予液体不同于固态光波导的奇异性质.例如以输运为主的流体特质可构造动态可调的阶跃波导;扩散明显的流体特质... 基于流体动力学调制,探究光流控波导的独特光学特性及其生化应用.将微流体独特的输运、扩散、离心性质应用到光波导设计中,赋予液体不同于固态光波导的奇异性质.例如以输运为主的流体特质可构造动态可调的阶跃波导;扩散明显的流体特质可构造具有独特衍射现象的渐变波导;离心性质可实现纤芯3D可调的动态波导.结合其他液体性质,光流控波导可实现传感、染料激光及颗粒分离的诸多生化应用. 展开更多
关键词 光流控波导 扩散性质 输运性质 离心性质 染料激光
下载PDF
FORMATION OF LARGE-SCALE TECTONIC ELEMENTS FROM THE POSITION OF CENTRIFUGAL-INERTIAL FORCE ACTION
2
作者 Molchanov V. I. Paraev V. V. 《Geotectonica et Metallogenia》 2005年第1期13-33,共21页
We describe the earlier unknown, when applied to global tectonics, centrifugal inertial mechanism of lithosphere plate moving under the effect of forces appearing as a result of Earth’s planetary rotation. The mechan... We describe the earlier unknown, when applied to global tectonics, centrifugal inertial mechanism of lithosphere plate moving under the effect of forces appearing as a result of Earth’s planetary rotation. The mechanism stated gives an insight into global tectonics of plates with the indirect participation of emanation streams which, in their turn, are the derivatives of centrifugal and inertial forces of planetary motion. The application of this mechanism provides a logical explanation for the regularities of global tectogenesis including the formation of mountain ridges mainly of submeridional and sublatitudinal strike, and also the drift of continental plates from the east to the west and from the south to the north. The mechanism clarifies the significance of the Arctic and the Antarctic Circles as geodynamic barriers. 展开更多
关键词 formation tectonic element centrifugal-inertial force section
下载PDF
Separation Problem in Satellite Gravimetry
3
作者 SHEN Wenbin NING Jinsheng Key Lab. of Geospace Environment and Geodesy, MEC School of Geodesy and Geomatics, Wuhan University, 129Luoyu Road, Wuhan 430079, China 《Geo-Spatial Information Science》 2007年第1期4-11,共8页
The problem of separating gravitation from inertia is discussed in very general sense, and the conclusion is positive: man can separate gravitation from inertia, if various observation techniques are applied for. The ... The problem of separating gravitation from inertia is discussed in very general sense, and the conclusion is positive: man can separate gravitation from inertia, if various observation techniques are applied for. The accelerometer's position problem in satellite gravimetry is investigated, and the additional acceleration effect due to the position error of an instrument as well as the difference between the mass center and the gravity center is explored. 展开更多
关键词 separation of gravitation and inertia satellite gravimetry mass and gravity centers position error extra acceleration
下载PDF
On the nature of tip clearance flow in subsonic centrifugal impellers 被引量:10
4
作者 LIU ZhengXian PING Yan ZANGENEH Mehrdad 《Science China(Technological Sciences)》 SCIE EI CAS 2013年第9期2170-2177,共8页
Increasing demand for downsizing of engines to improve CO2 emissions has resulted in renewed efforts to improve the efficiency and expend the stable operating range of the centrifugal compressors used in petro-chemica... Increasing demand for downsizing of engines to improve CO2 emissions has resulted in renewed efforts to improve the efficiency and expend the stable operating range of the centrifugal compressors used in petro-chemical equipment and turbochargers. The losses in these compressors are dominated by tip clearance flow. In this paper, the tip clearance flow in the subsonic impeller is numerically investigated. The nature of the tip clearance in inducer, axial to radial bend and exducer are studied in detail at design and off-design conditions by examining the detailed flow field through the clearance and the interaction of the clearance flow with the shear effect with the endwalls. The correlation between blade loading and span wise geometry and clearance flow at different locations are presented. 展开更多
关键词 centrifugal impeller tip clearance subsonic flow numerical simulation blade loading
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部