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中短波天线场形测量技术探讨 被引量:1
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作者 李长青 《新媒体研究》 2016年第8期41-42,共2页
在科学技术迅速发展的时代,一种新兴的比传统的中短波天线场形测量方法更智能化的测量仪器自动记录场强仪进入了大家的视线,这种通过设备的运行和处理数据进行分析的设备能给相关活动带来便利。文章立足现实的实验情况,分析垂直方向上... 在科学技术迅速发展的时代,一种新兴的比传统的中短波天线场形测量方法更智能化的测量仪器自动记录场强仪进入了大家的视线,这种通过设备的运行和处理数据进行分析的设备能给相关活动带来便利。文章立足现实的实验情况,分析垂直方向上以及水平方向上的场形进行准确测量的数据,探讨中短波中天线场形的相关测量新技术,以便在我国社会的发展中能广泛应用。 展开更多
关键词 中短波 场形测量 数据 技术
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试论中短波天线场形测量新技术 被引量:1
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作者 许峰 《西部广播电视》 2015年第24期236-236,共1页
通过对中短波天线场形测量技术的研究,能够对中短波的发射效果进行有效的验证和判断,而传统的场形测量技术不仅精度小,而且效率低,在这种情况下,对中短波天线场形测量的新技术进行研究具有非常重要的现实意义。
关键词 中短波 天线 场形测量 新技术
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浅析中短波天线场形测量新技术 被引量:2
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作者 高强 《电子制作》 2014年第8X期158-158,共1页
中短波天线场型测量技术能够有效的验证和判断短波发射效果,通过场形的测量可以检查天馈线系统是否工作正常,是否达到了设计效果;通过场形的测量可以对天馈线系统进行调整,使其达到最佳状态。该文主要探讨中短波天线场形测量新技术。
关键词 中短波 天线 场形测量 新技术
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中短波天线的场形测量创新技术探析 被引量:2
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作者 郝建翔 《信息通信》 2014年第12期13-14,共2页
自动记录场强仪是一种新兴的场强测量仪器,比起传统的中短波天线场形测量方法,它更加智能化。文章主要通过对新设备场强测量原理与方法的介绍,来对比它和传统测量方法的区别与差异。
关键词 天馈线系统 测量 中短波发射天线 垂直场形测量
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探究中短波天线场形测量新技术 被引量:1
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作者 武凯 《新闻传播》 2016年第6X期28-29,共2页
中短波天线场形测量技术是规避了传统场形测量技术精度小、效率低、安全性差等弊端的新技术,能够有效验证和判断中短波的发射效果。场形测量技术是进行适时的调整检测天馈线系统的一种技术手段,便于其设计目的的实现和效果最佳化的发挥... 中短波天线场形测量技术是规避了传统场形测量技术精度小、效率低、安全性差等弊端的新技术,能够有效验证和判断中短波的发射效果。场形测量技术是进行适时的调整检测天馈线系统的一种技术手段,便于其设计目的的实现和效果最佳化的发挥。本文主要围绕中短波天线场形测量新技术的设备原理和数据处理软件的主要功能及其重要的现实意义进行探讨。 展开更多
关键词 中短波发射天线 场形测量 自动记录强仪 数据处理软件
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中短波天线场形测量新技术的探析
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作者 冯爱明 《电子世界》 2019年第14期208-208,F0003,共2页
中短波天线的场形测量,对测量技术的应用有一定要求。基于这种认识,本文结合中短波天线场形测量问题,对垂直场形测量新技术展开了分析,对技术特点进行了阐述,然后对技术应用问题进行了探讨,在确定自动记录场强仪功能结构和技术参数基础... 中短波天线的场形测量,对测量技术的应用有一定要求。基于这种认识,本文结合中短波天线场形测量问题,对垂直场形测量新技术展开了分析,对技术特点进行了阐述,然后对技术应用问题进行了探讨,在确定自动记录场强仪功能结构和技术参数基础上,对测量数据处理分析过程展开了叙述,为关注这一话题的人们提供参考。引言:在天馈线系统使用的过程中,还要在中短波范围进行发射天线场形测量,以便确认系统中短波发射效果。 展开更多
关键词 天馈线系统 场形测量 中短波天线 发射天线 中短波发射 自动记录强仪 测量数据处理 技术的应用
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Simulation of droplet topography on superhydrophobic surface
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作者 胡德志 WANG Bo +1 位作者 ZHENG Yan-ping PEI Ming-de 《Journal of Chongqing University》 CAS 2013年第2期75-80,共6页
We established a novel droplet model (with-gravity model) to show the gravity effect of the droplet in the contact angle experiment.By using with-gravity model, we obtained a three-dimensional topography of the drople... We established a novel droplet model (with-gravity model) to show the gravity effect of the droplet in the contact angle experiment.By using with-gravity model, we obtained a three-dimensional topography of the droplet including the height of the droplet, the shape of the baseline and the circumference of the baseline.Comparing the with-gravity model with the ideal spherical model, our model considered the measurement error caused by gravity effect in the contact angle experiment which is a key point to influence the three-dimension topography of the droplet.From the calculation of our model, we found that there were two important points to enhance the measurement error: the size of the droplet and the contact angle.With the droplet and the contact angle became larger, measurement error was obviously increased. 展开更多
关键词 contact angle droPlet gravity Yang-LaPlace equation baseline length hydrostatic pressure
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Experimental Study of Effects of Tip Geometry on the Flow Field in a Turbine Cascade Passage 被引量:7
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作者 MA Hongwei WANG Lixiang 《Journal of Thermal Science》 SCIE EI CAS CSCD 2015年第1期1-9,共9页
This study investigates the effects of blade tip geometry on the flow field of a turbine cascade at the incidence angle of 0 degree experimentally. The tests were performed in a low-speed turbine cascade wind tunnel. ... This study investigates the effects of blade tip geometry on the flow field of a turbine cascade at the incidence angle of 0 degree experimentally. The tests were performed in a low-speed turbine cascade wind tunnel. The Reynolds number based on the blade chord was about 172300 at the exit. Traverses of the exit flow field were made in order to measure the overall performance. The effects of using fiat tip and grooved tip with a chord-wise channel were studied. The case with the flat tip is referenced as the baseline. The tip clearances are all 1 mm measuring 0.84 percent of the blade span. The depth of channel is 2mm.The flow field at 10% chord downstream from the cascade trailing edge was measured at 38 span-wise positions and 26 pitch-wise positions using a mini five-hole pressure probe. The static pressure distribution on the tip end wall is measured at 16 pitch-wise stations and 17 chord-wise stations. Results show that there exists great pressure gradient in the pressure side for the fiat tip and the pressure side squealer tip, which means strong leakage flow. The pressure gradient from the pressure side to the suction side is greatly decreased for the grooved tip, and the resulting leakage flow is weaker. The core of the leakage vortex moves closer to the suction side for the pressure side squealer tip and farther away from the suction side for the suction side squealer tip. The pressure side squealer has little advantages over the fiat tip in improving the flow capacity and reducing the overall losses. The suction side squealer tip and grooved tip can effectively decrease the intensity of the tip leakage vortex, improve the flow capacity and reduce loss of the turbine cascade passage and the grooved tip performs the best. 展开更多
关键词 blade tip geometry turbine cascade flow field EFFECT
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New Metrics from a Fractional Gravitational Field
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作者 Rami Ahmad El-Nabulsi 《Communications in Theoretical Physics》 SCIE CAS CSCD 2017年第9期309-312,共4页
Agop et al. proved in Commun. Theor. Phys. (2008) that, a Reissner-Nordstrom type metric is obtained, if gauge gravitational field in a fractal spacetime is constructed by means of concepts of scale relativity. We p... Agop et al. proved in Commun. Theor. Phys. (2008) that, a Reissner-Nordstrom type metric is obtained, if gauge gravitational field in a fractal spacetime is constructed by means of concepts of scale relativity. We prove in this short communication that similar result is obtained if gravity in D-spacetime dimensions is fractionalized by means of the Glaeske-Kilbaz Saigo fractional. Besides, non-singular gravitational fields are obtained without using extra-dimensions. We present few examples to show that these gravitational fields hold a number of motivating features in spacetime physics. 展开更多
关键词 D-spacetime dimensions fractional gravitational field
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