国产导热仪的研制与性能评价

B. E. Anyaegbuna, O. Olayemi, I. K. Adegun, A. O. Onokwai, Ikechukwu D. Anyaegbuna
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摘要

本文介绍了一个保护热板(GHP)装置的设计和施工,以准确评估一些尼日利亚当地建筑材料的导热性。GHP装置是一种稳态测量装置。本仪器设计用于测量不同成分砌体建筑材料的导热系数。设计特点包括:冷热板采用厚度为6毫米、尺寸不同的铝板制作;保护板也由铝制成,但厚度为6.35毫米,形成了一个刚性的外壳,所有的样品都包裹在一个低碳钢外壳中。操作测量温度范围从-20变化试样厚度到60mm。结果表明,混凝土、红土以及水泥与红土、粘土和沙子的混合物的导热系数范围为0.77W/mK至1.80 W/mK。轻质混凝土的热导率值从1.80W/m降低,记录了混凝土的水分效应。K降至1.32W/m。K为烘干混凝土样品含水量减少1.5%(重量)以上。本地制造的GHP设备的性能评估显示,与ASHRAE公布的烤炉混凝土导热系数数据相比,差异为3.03%
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development and Performance Evaluation of Locally Fabricated Thermal Conductivity Apparatus
This paper presents the design and construction of a Guarded Hot Plate (GHP) apparatus for the accurate assessment of thermal conductivities of some Nigerian local building materials. The GHP apparatus is a steady-state measurement device. This apparatus is designed to measure the thermal conductivities of masonry building materials of different compositions. The design features included hot and cold plates fabricated with aluminum plates of 6 mm thickness and varying dimensions; the guard plates also made of aluminum, but of 6.35 mm thickness, forms a rigid enclosure for the specimen all encased in a mild steel housing. The operating measuring temperature range is from -20 for varying specimen thickness up to 60mm. Results are presented for concrete, laterite, and a mixture of cement with laterite, clay, and sand respectively, and it covers a range of thermal conductivities of 0.77W/mK to 1.80 W/mK. Moisture effect on concrete was recorded for the lightweight concrete as the thermal conductivity value reduced from 1.80W/m.K to 1.32W/m.K for the oven-dried concrete sample over a 1.5% (by weight) reduction in water content. The performance evaluation of the locally fabricated GHP apparatus showed a 3.03% percentage difference over ASHRAE’s published data on oven-baked concrete thermal conductivities
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