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A new simplified model to calculate surface temperature and heat transfer of radiant floor heating and cooling systems

机译:一种新的简化模型,用于计算地板辐射采暖和冷却系统的表面温度和传热

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摘要

In this paper, a new simplified model to calculate surface temperature and heat transfer of radiant floor heating and cooling system was proposed and established using the conduction shape factor. Measured data from references were used to validate the proposed model. The results showed that the maximum differences between the calculated surface temperature and heat transfer using the proposed model and the measured data were 0.8 ºC and 8.1 W/m for radiant floor heating system when average water temperature between 40 ºC and 60 ºC. For the corresponding values were 0.3 ºC and 2.0 W/m for radiant floor cooling systems when average water temperature between 10 ºC and 20 ºC. Numerically simulated data in this study were also used to validate the proposed model. The results showed that the surface temperature and heat transfer of radiant floor calculated by the proposed model agreed very well with the numerically simulated data when average water temperature changing from 25 ºC to 45 ºC for radiant floor heating systems and from 10 ºC to 20 ºC for radiant floor cooling systems. Hence, the proposed model was validated to be applicable and was believed to be potentially beneficial for the design and control of radiant floor heating and cooling systems. © 2015 Elsevier B.V. All rights reserved.
机译:本文提出了一种新的简化模型,用于计算辐射地板采暖和制冷系统的表面温度和传热,并利用传导形状因子建立了模型。来自参考的测量数据用于验证所提出的模型。结果表明,当平均水温在40ºC至60ºC之间时,使用该模型计算的表面温度和热传递与实测数据之间的最大差异为0.8ºC和8.1 W / m。当平均水温在10ºC和20ºC之间时,对于辐射式地板冷却系统,相应的值为0.3ºC和2.0 W / m。本研究中的数值模拟数据也用于验证所提出的模型。结果表明,当辐射地板采暖系统的平均水温从25ºC到45ºC以及从10ºC到20ºC的平均水温变化时,通过该模型计算得出的辐射地板的表面温度和传热与数值模拟数据非常吻合。辐射地板冷却系统。因此,所提出的模型经过验证是适用的,并且被认为对辐射地板采暖和冷却系统的设计和控制有潜在的好处。 ©2015 Elsevier B.V.保留所有权利。

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