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首页> 外文期刊>International Journal of Applied Engineering Research >Experimental Evaluation on Light Transmittance Performance of Translucent Concrete
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Experimental Evaluation on Light Transmittance Performance of Translucent Concrete

机译:半透明混凝土透光性能实验评价

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摘要

Translucent concrete is a new energy-saving building material that permits transmission of light into indoor environment because of the embedded optical fibers with application as architectural wall and structural facade of buildings. In this experimental study, the light transmittance performance of plastic optical fiber (POF) based translucent concrete was evaluated using an electrical circuit test setup with light dependent resistor (LDR). A total of 18 specimens containing 2 mm and 3 mm fiber diameters and POF volume ratio of 2%, 4% and 6% were produced. The experimental results showed that the light transmission increased with the increases of POF volume ratio. On the other hand, the amount of light transmitted gradually decreased with the increase in distance between the specimen and light source. Moreover, the intensity of light transmitted through translucent concrete gradually decreases with respect to increases in distance between LDR and specimen. The spacing, diameter and number of optical fibers have a considerable effects on the overall ratio of light transmitted. Empirical curves are developed based on correlation between light transmittance and other various factors that affect the efficiency of light transmission through translucent concrete. The translucent concrete prepared in this study performs up to 22% of light transmittance, which is sufficient illuminance for residential, and office buildings. The results evidently show that translucent concrete can be successfully used as energy efficient construction material for sustainable construction and green building development.
机译:半透明混凝土是一种新的节能建筑材料,允许光线传输到室内环境中,因为嵌入式光纤具有作为建筑物的建筑墙和结构外观的应用。在该实验研究中,使用带有光依赖电阻(LDR)的电路测试设置评估塑料光纤(POF)的半透明混凝土的透光性能。总共含有2mm和3mm纤维直径的18个样品,并且POF体积比为2%,4%和6%。实验结果表明,光传动随着POF体积比的增加而增加。另一方面,随着样本和光源之间的距离的增加,透射的光量逐渐减小。此外,通过半透明混凝土传递的光强度相对于LDR和样本之间的距离增加逐渐减小。光纤的间距,直径和数量对传输的光的总比具有相当大的效果。基于透光率和其他通过半透明混凝土的光传输效率之间的相关因子之间的相关性开发了经验曲线。本研究中制备的半透明混凝土的透光率高达22%,这对于住宅和办公楼和办公楼具有足够的照度。结果显然表明,半透明混凝土可以成功用作可持续建筑和绿色建筑开发的节能建筑材料。

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