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Research on Form Innovation Design and Implementation of Secondary Reconstruction for Cool Core Fabric
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作者 Jun Liang Yueming Yang 《International Journal of Technology Management》 2015年第9期17-19,共3页
In this paper, we conduct theoretical analysis and literature review applications on the form innovation design and implementation of secondary reconstruction for cool core fabric. At present, due to the development o... In this paper, we conduct theoretical analysis and literature review applications on the form innovation design and implementation of secondary reconstruction for cool core fabric. At present, due to the development of The Times and the progress of science and technology, people' s aesthetic concept also transformed, functional and decorative fabric art aesthetic has been raised to an important level, but also strong. Second fabric design is refers to the use of various traditional and high-tech means to the existing fabric to open out the design of the processing, make its surface rich visual texture and touch skin texture. Our method is effective and novel, we will try to make it into real-world applications in the future. 展开更多
关键词 Cool Core Fabric secondary design and Implementation Reconstruction Procedure.
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Computer Modeling and Simulation Evaluation of High Power LED Sources for Secondary Optical Design 被引量:3
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作者 SU Hong-dong WANG Ya-jun DONG Ji-yang CHEN Zhong 《Semiconductor Photonics and Technology》 CAS 2007年第3期186-191,共6页
Proposed and demonstrated is a novel computer modeling method for high power light emitting diodes(LEDs). It contains geometrical structure and optical property of high power LED as well as LED dies definition with it... Proposed and demonstrated is a novel computer modeling method for high power light emitting diodes(LEDs). It contains geometrical structure and optical property of high power LED as well as LED dies definition with its spatial and angular distribution. Merits and non-merits of traditional modeling methods when applied to high power LEDs based on secondary optical design are discussed. Two commercial high power LEDs are simulated using the proposed computer modeling method. Correlation coefficient is proposed to compare and analyze the simulation results and manufacturing specifications. The source model is precisely demonstrated by obtaining above 99% in correlation coefficient with different surface incident angle intervals. 展开更多
关键词 high power LEDs solid-state lighting SIMULATION ray tracing secondary optical design correlation coefficient
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