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HEAT-TRANSFER COEFFICIENT ESTIMATION SYSTEM, HEAT-TRANSFER COEFFICIENT ESTIMATION METHOD AND PROGRAM, AND HEAT-TRANSFER COEFFICIENT TEST DEVICE

机译:传热系数估计系统,传热系数估计方法和程序以及传热系数测试装置

摘要

PROBLEM TO BE SOLVED: To simply estimate a heat-transfer coefficient that is one of indicators of heat insulation properties.SOLUTION: A heat-transfer coefficient test device includes a plate-like member (21), a heating member (22), and first and second temperature sensors (25,24). The plate-like member (21) has a front surface (21a) that abuts an interior side surface of a surface member, and a rear surface (21b) opposite thereto, and has a known heat-transfer coefficient. The heating member (22) is provided on the rear surface side of the plate-like member, and transmits heat to the surface member via the plate-like member. The first and second temperature sensors (25,24) are provided on the front and rear surfaces of the plate-like member, respectively. The test device can be used to estimate a heat-transfer coefficient of the surface member, based on a front surface temperature and a rear surface temperature of the plate-like member, an outdoor side surface temperature of the surface member, and the heat-transfer coefficient of the plate-like member.SELECTED DRAWING: Figure 2
机译:解决的问题:简单地估计作为绝热性能指标之一的传热系数。解决方案:传热系数测试装置包括板状构件(21),加热构件(22)和第一和第二温度传感器(25,24)。板状部件(21)具有与表面部件的内侧面抵接的前表面(21a)和与其相对的后表面(21b),并且具有已知的传热系数。加热构件(22)设置在板状构件的后表面侧,并且经由板状构件将热传递至表面构件。第一和第二温度传感器(25,24)分别设置在板状构件的前表面和后表面上。该测试装置可用于根据板状构件的前表面温度和后表面温度,表面构件的室外侧表面温度以及表面导热系数来估算表面构件的传热系数。板状构件的传递系数选定图:图2

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