建筑围护结构大修前热力工程仪器检验

O. Ryazancev, P. Trubaev, Y. Koshlich, D. Dotsenko, D. Buhanov
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摘要

本文对22幢使用寿命在40 ~ 50年以上的硅酸盐砖、陶瓷砖或钢筋混凝土板多户型住宅在大修前进行的热力测量结果进行了分析。热计算,以确定节省的能源资源显示,平均节省28%的热能保温后。介绍了在热成像检查中发现的封闭结构的典型缺陷,并进行了系统的介绍。用热成像仪进行外部红外热成像检测,然后对热像图进行处理。结果表明,热成像检查结果对绝缘材料的参数没有影响。给出了传热阻力的测量结果。测量是使用十通道热流密度和温度计进行的。实际测得的传热阻力与设计阻力的平均偏差为16% ~ 33%。保温前墙体的传热阻力远小于保温后的传热阻力值和多层墙体结构的最终阻力值。测定保温壁热阻的误差不影响所需的保温厚度。结论是,在大修之前对建筑物的外围结构进行仪器检查似乎是多余的。建议在对苏联建造的住宅建筑进行大修期间使用典型的隔热层厚度,对于别尔哥罗德地区的气候条件,这将是10厘米的矿棉隔热层。
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INSTRUMENTAL THERMAL ENGINEERING INSPECTION OF BUILDING ENCLOSING STRUCTURES BEFORE MAJOR REPAIRS
The analysis of the results of the instrumental thermal engineering survey of 22 multi-apartment residential buildings built of silicate and ceramic bricks or reinforced concrete panels, with a service life of buildings of more than 40–50 years, carried out before major repairs is given. Thermal calculations to determine the savings in energy resources showed an average value of savings in thermal energy after insulation of 28 %. Typical defects of enclosing structures identified during thermal imaging examination are presented and systematized. An external examination by infrared thermography is carried out with a thermal imager, followed by processing of thermograms. The absence of influence of the results of thermal imaging examination on the parameters of the insulation is shown. The results of measurements of resistance to heat transfer are presented. The measurements are made using ten-channel heat flux density and temperature meters. The actual measured heat transfer resistance deviated from the design resistance by an average of 16 per cent to 33 per cent. The heat transfer resistance of the wall before insulation is much less than the value of the heat transfer resistance of the insulation and the final resistance of the multilayer wall structure. The error in determining the thermal resistance of the insulated wall does not affect the required thickness of the insulation. It is concluded that the instrumental examination of the enclosing structures of buildings before a major overhaul seems to be redundant. It is recommended to use a typical thickness of insulation during the overhaul of Soviet-built residential buildings, which for the climatic conditions of the Belgorod Region will be 10 cm of mineral wool insulation.
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