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Radiator and floor heating operative temperature and temperature variation corrections for EN 15316-2 heat emission standard

机译:散热器和地板采暖的工作温度和温度变化校正,符合EN 15316-2散热标准

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In this paper new draft standard prEN 15316:2-2014 was tested against detailed dynamic simulation and an operative temperature corrections were developed in order to enable fair comparison of heat emitters to provide equal thermal comfort for occupants. Simple one room model with different number of external envelope elements and two occupant positions were used to analyze operative temperature effects. Operative temperature corrections and comparative analyses with the tabulated values of the standard were conducted with two low energy reference building simulation models in two climates. The use of the operative temperature set-point increased the temperature variation in the case of radiator heating by 0.2-0.3 K and decreased it in the case of floor heating by 0.1 K. However, in the case of floor heating the occupant location effect provided an additional increase of 0.1 K which compensated the operative temperature effect, i.e. no correction is needed for floor heating. For the radiator heating the operative temperature variation of 0.25 K is to be added, but this increase falls well within the safety margin of about 0.35 K of existing tabulated values. The comparison of the emission efficiency of the radiator and floor heating revealed equally efficient by the PI controller. (C) 2015 Elsevier B.V. All rights reserved.
机译:在本文中,针对详细的动态模拟测试了新的标准草案prEN 15316:2-2014,并开发了可操作的温度校正功能,以便能够公平地比较散热器,为乘员提供同等的热舒适度。简单的一室模型具有不同数量的外部信封元素和两个乘员位置,用于分析操作温度的影响。在两个气候下,使用两个低能耗参考建筑模拟模型进行了可操作温度校正和采用标准列表值的比较分析。使用工作温度设定点会使散热器采暖时的温度变化增加0.2-0.3 K,如果使地板采暖则使温度变化减小0.1K。但是,在地板采暖的情况下,可提供乘员位置效应额外增加0.1 K,可补偿工作温度的影响,即地板加热无需校正。对于散热器加热,要添加0.25 K的工作温度变化,但是这种增加恰好在现有列表值的约0.35 K的安全裕度之内。 PI控制器对散热器和地板采暖器的排放效率的比较显示出同等的效率。 (C)2015 Elsevier B.V.保留所有权利。

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