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基于复合抛物面收集器的LED光通量测量的研究 被引量:6
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作者 周小丽 刘木清 +1 位作者 朱绍龙 沈海平 《光电子.激光》 EI CAS CSCD 北大核心 2009年第9期1137-1140,共4页
基于LED体积小、窄光束的特点,提出采用复合抛物面收集器(CPC)将LED发出的光收集起来再通过探测器测量其光通量值。采用Tracepro软件建立系统模型,模拟不同角度光线和不同光束角的LED测量结果;在软件模拟的基础上建立实验装置,在此装置... 基于LED体积小、窄光束的特点,提出采用复合抛物面收集器(CPC)将LED发出的光收集起来再通过探测器测量其光通量值。采用Tracepro软件建立系统模型,模拟不同角度光线和不同光束角的LED测量结果;在软件模拟的基础上建立实验装置,在此装置上测量7只LED样品,测量结果与光通量绝对测量法进行比较。测量结果表明,该方法可以达到较高的精度。 展开更多
关键词 LED 光通量 复合抛物面收集器(CPC) TRACEPRO
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太阳能收集和传输的研究
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作者 韩建军 刘明辉 赵修建 《功能材料》 EI CAS CSCD 北大核心 2007年第A04期1570-1573,共4页
对高精度太阳能抛物面镜收集器和大孔径低损耗PMMA/Ag泄漏型空芯光纤进行了设计与研究,安装在收集器上的光电追踪器保证了入射光线聚焦在抛物面轴上,有利于聚焦光斑有效地传输到空芯光纤内。与传统的太阳能利用装置相比较,本装置不... 对高精度太阳能抛物面镜收集器和大孔径低损耗PMMA/Ag泄漏型空芯光纤进行了设计与研究,安装在收集器上的光电追踪器保证了入射光线聚焦在抛物面轴上,有利于聚焦光斑有效地传输到空芯光纤内。与传统的太阳能利用装置相比较,本装置不需要进行能量转换,因此效率高,结构简单,可以实现聚焦后太阳能的远距离高效传输。 展开更多
关键词 抛物面收集器 空芯光纤 光电追踪器
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Optical Design of a Solar Parabolic Concentrating Collector Based on Trapezoidal Reflective Petals
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作者 Sasa Pavlovic Velimir Stefanovic +1 位作者 Darko Vasiljevic Emina Petrovic 《Journal of Energy and Power Engineering》 2015年第8期714-720,共7页
In this paper, detailed optical of the solar parabolic dish concentrator is presented. The system has diameter D = 2,800 mm and focal length f = 1,400 mm. The efficient conversion of solar radiation in heat at these t... In this paper, detailed optical of the solar parabolic dish concentrator is presented. The system has diameter D = 2,800 mm and focal length f = 1,400 mm. The efficient conversion of solar radiation in heat at these temperature levels requires a use of concentrating solar collectors. In this paper, detailed optical design of the solar parabolic dish concentrator is presented. The parabolic dish of the solar system consists from 12 curvilinear trapezoidal reflective petals. This paper presents optical simulations of the parabolic solar concentrator unit using the ray-tracing software TracePro. The total flux on receiver and the distribution of irradiance for absorbed flux on center and periphery receiver are given. The total flux at the focal region is 4,031.3 W. The goal of this paper is to present optical design of a low-tech solar concentrator, that can be used as a potentially low-cost tool for laboratory-scale research on the medium-temperature thermal processes, cooling, industrial processes, solar cooking and polygeneration systems, etc. 展开更多
关键词 Solar parabolic dish concentrator optical analysis solar energy solar radiation.
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A design method and numerical study for a new type parabolic trough solar collector with uniform solar flux distribution 被引量:16
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作者 WANG Kun HE YaLing CHENG ZeDong 《Science China(Technological Sciences)》 SCIE EI CAS 2014年第3期531-540,共10页
The non-uniform concentrated solar flux distribution on the outer surface of the absorber tube can lead to large circumferential temperature difference and high local temperature of the absorber tube wall,which is one... The non-uniform concentrated solar flux distribution on the outer surface of the absorber tube can lead to large circumferential temperature difference and high local temperature of the absorber tube wall,which is one of the primary causes of parabolic trough solar receiver(PTR)failures.In this paper,a secondary reflector used as a homogenizing reflector(HR)in a conventional parabolic trough solar collector(PTSC)was recommended to homogenize the solar flux distribution and thus increase the reliability of the PTR.The design method of this new type PTSC with a HR was also proposed.Meanwhile,the concentrated solar flux distribution was calculated by adopting the Monte Carlo ray-trace(MCRT)method.Then,the coupled heat transfer process within the PTR was simulated by treating the solar flux calculated by the MCRT method as the heat flux boundary condition for the finite volume method model.The solar flux distribution on the outer surface of the absorber tube,the temperature field of the absorber tube wall,and the collector efficiency were analyzed in detail.It was revealed that the absorber tube could almost be heated uniformly in the PTSC with a HR.As a result,the circumferential temperature difference and the maximum temperature could be reduced significantly,while the efficiency tended to decrease slightly due to the inevitably increased optical loss.Under the conditions studied in this paper,although the collector efficiency decreased by about 4%,the circumferential temperature difference was reduced from about 25 to 3 K and the maximum temperature was reduced from667 to 661 K. 展开更多
关键词 parabolic trough solar collector evacuated tubular receiver secondary reflector solar flux distribution temperature distribution
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