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作 者:陈福 续芯如 刘硕芳 夏韦美 陈兆民 李莹 CHEN Fu;XU Xinru;LIU Shuofang;XIA Weimei;CHEN Zhaomin;LI Ying(Qinhuangdao Glass Industry Research and Design Institute Company Limited,Qinhuangdao 066001,China;Hebei Province Glass Energy Saving and Emission Reduction Technology Innovation Center,Qinhuangdao 066001,China;Hebei Province Company Technology Center,Qinhuangdao 066001,China)
机构地区:[1]秦皇岛玻璃工业研究设计院有限公司,秦皇岛066001 [2]河北省玻璃节能减排技术创新中心,秦皇岛066001 [3]河北省企业技术中心,秦皇岛066001
出 处:《玻璃》2025年第3期59-62,共4页Glass
基 金:国家重点研发计划项目(项目编号:2023YFC3806200)。
摘 要:随着国家进一步推进“双碳”战略,绿色低碳成为各行业发展的新生动力。中空玻璃作为一种高效节能的建筑材料,在绿色建筑领域得到了广泛应用。通过阐述中空玻璃的传热系数与遮阳系数,对比分析2×1.5 m规格的三玻两腔中空玻璃中,玻璃原片与气体种类比例对中空玻璃的热工性能的影响,发现不同气体组合及比例对中空玻璃的热工性能影响较大,明显优于空气填充效果,有助于提升整体建筑节能水平。As our state further promotes the "dual carbon" strategy, green and low-carbon has become a new driving force for the development of various industries. Insulating glass, as a kind of high efficiency and energy saving building material, has been widely used in the field of green building. By describing the heat transfer coefficient and shading coefficient of insulating glass, and comparing and analyzing the influence of the glass and the ratio of the gas type on the thermal performance of insulating glass with two-space constructed by three pieces of -2×1.5 m glass, it is found that different combinations and proportion of gases have a greater impact on the thermal performance of insulating glass, which is obviously better than the effect of air filling, and is conducive to improving the overall building energy saving level.
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