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White LED spectrum for minimising damage to Chinese traditional heavy colour paintings

机译:白色LED光谱可最大程度地减少对中国传统重彩画的损害

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摘要

Optical radiation can cause permanent damage to the colours of high-responsivity Chinese traditional paintings. The white light emitting diode is flexible, efficient and can create similar colour phenomena with different spectra, making it easy to adjust the spectral irradiance distribution according to specific requirements. It is important to establish quantitative influence rules of white light emitting diode narrowband light for protecting traditional paintings, which optimises the constitution and proportion of the white light emitting diode spectrum according to the lowest damage level. In this study, we utilised typical narrowband spectra as light sources to illuminate Chinese traditional heavy colour paintings, and measured the CIELAB colour data periodically. We then calculated the colour difference based on the data and drew corresponding decay curves for the different pigments used. By analysing the quantitative influence characteristics, we were able to determine the quantitative influence and relative influence coefficient of each narrowband light type. These results provide a reference for the spectral irradiance distribution of the minimum-damage white light emitting diode for different heavy colour painting types based on the inorganic pigment characteristics.
机译:光学辐射会永久损坏高响应性中国传统绘画的颜色。白光发光二极管灵活,高效,并且可以产生具有不同光谱的相似颜色现象,从而易于根据特定要求调整光谱辐照度分布。建立白色发光二极管窄带光的定量影响规则对于保护传统绘画很重要,这要根据最低的损害水平来优化白色发光二极管光谱的构成和比例。在这项研究中,我们利用典型的窄带光谱作为光源来照亮中国传统的重彩画,并定期测量CIELAB颜色数据。然后,我们根据数据计算色差,并针对所使用的不同颜料绘制相应的衰减曲线。通过分析定量影响特征,我们能够确定每种窄带光类型的定量影响和相对影响系数。这些结果为基于无机颜料特性的不同重色涂料类型的最小损伤白光发光二极管的光谱辐照度分布提供了参考。

著录项

  • 来源
    《Lighting Research & Technology》 |2018年第6期|911-920|共10页
  • 作者

    R Dang; Y Yuan; G Liu; C Luo; J Liu;

  • 作者单位

    Tianjin Key Laboratory of Architectural Physics and Environmental Technology, School of Architecture, Tianjin University, Tianjin, China;

    Tianjin Key Laboratory of Architectural Physics and Environmental Technology, School of Architecture, Tianjin University, Tianjin, China;

    Tianjin Key Laboratory of Architectural Physics and Environmental Technology, School of Architecture, Tianjin University, Tianjin, China;

    Tianjin Key Laboratory of Architectural Physics and Environmental Technology, School of Architecture, Tianjin University, Tianjin, China;

    Tianjin Key Laboratory of Architectural Physics and Environmental Technology, School of Architecture, Tianjin University, Tianjin, China;

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  • 正文语种 eng
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  • 入库时间 2022-08-18 03:57:52

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