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首页> 外文期刊>E3S Web of Conferences >Development of the experimental stand for investigation of heating and drying phenomena in the porous building materials with one surface of the sample exposed to the flowing air
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Development of the experimental stand for investigation of heating and drying phenomena in the porous building materials with one surface of the sample exposed to the flowing air

机译:开发用于研究多孔建筑材料中加热和干燥现象的实验台,样品的一个表面暴露于流动的空气中

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The paper presents development of the experimental stand for investigation of heating and drying phenomena in the porous building materials with one surface of the sample exposed to the flowing air. Moreover, results of preliminary measurements which verify the range of operating conditions achieved by the stand are shown. These conditions were assumed in the following range: 15℃-60℃, 10-90% and 0.1-10 m/s for temperature, relative humidity and velocity of the flowing air, respectively. In order to control the parameters of air used for heating and drying of porous materials, a closed-loop concept of the stand was proposed and equipped with several elements, i.e., the cooler (vapour condenser), fan with variable rotational speed, humidifier and heater. Furthermore, two parallel measurement ducts which allow to obtain two air streams with identical parameters were proposed. This enables two measurements at one time as well as faster verification of the repeatability of the performed measurements. The temperature measurements at the top surface and inside the sample are carried out applying the IR thermography and several K-type thermocouples, respectively, while overall moisture amount and the moisture content distribution in the specimen are found using tensometric force and electrical resistance meters, respectively.
机译:本文介绍了用于研究多孔建筑材料中加热和干燥现象的试验台的开发,其中样品的一个表面暴露于流动的空气中。此外,还显示了初步测量的结果,这些结果验证了机架所达到的工作条件范围。这些条件假定在以下范围内:温度,相对湿度和空气流通速度分别为15℃-60℃,10-90%和0.1-10 m / s。为了控制用于加热和干燥多孔材料的空气参数,提出了一种封闭式的机架概念,并配备了几个元件,即冷却器(蒸汽冷凝器),可变转速的风扇,加湿器和加热器。此外,提出了两个平行的测量导管,其允许获得具有相同参数的两个气流。这样可以一次进行两次测量,并且可以更快地验证执行的测量的可重复性。分别使用红外热成像和几个K型热电偶对样品的顶部和内部进行温度测量,而样品中的总水分含量和水分含量分布分别使用张力计和电阻计进行测量。 。

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