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Residential building energy demand and thermal comfort: Thermal dynamics of electrical appliances and their impact

机译:住宅建筑的能源需求和热舒适度:电器的热力学及其影响

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Within a thermally well-insulated building, internal heat gains are getting more important on the point of the building thermal condition and its energy management [1-3]. In this study, we are focusing on thermal impact of heat dissipation of electrical appliances on buildings by applying a dynamic thermal model of electrical appliances. While a static model considers only power profile or power density of electrical appliances, the used dynamic model in this paper contains not only power profile but also thermal characteristics of electrical appliances. The thermal characteristics have been determined in previous study [4]. We shortly explain the methodology. The simulations are conducted with different values of thermal characteristics (power and RxC) representative of standard household appliances. The appliance thermal impact on the buildings in terms of heating energy demand and thermal comfort of occupants during a winter are investigated. This study is conducted within both a conventional residential building model and a thermally well-insulated residential building model. Two behaviors were identified: (i) below critical appliance power (600 W, 200 W for the B1 and B2, respectively), we observe fully power substitution of the heating energy demand. (ii) Above this critical power there is no fully substitution. Due to important temperature inhomogeneity within the different zones and the air renew flow structures coupled to the shift of appliance power consumption toward the unoccupied periods, the underlined lack of substitution is explained. It shows the necessity of dynamic thermal modeling of electrical appliances for more accurate and efficient building energy simulation and energy management especially for low energy buildings. (C) 2016 Elsevier B.V. All rights reserved.
机译:在隔热良好的建筑物中,就建筑物的热状况及其能源管理而言,内部热量获取变得越来越重要[1-3]。在本研究中,我们将通过应用电器的动态热模型来关注电器散热对建筑物的热影响。静态模型仅考虑电器的功率曲线或功率密度,而本文使用的动态模型不仅包含电器的功率曲线,而且还包括电器的热特性。在以前的研究中已经确定了热特性[4]。我们将简短地解释该方法。使用代表标准家用电器的不同热特性值(功率和RxC)进行仿真。研究了设备在冬季对建筑物的热影响,包括热能需求和居住者的热舒适度。这项研究是在常规住宅模型和隔热良好的住宅模型中进行的。确定了两种行为:(i)在临界设备功率以下(B1和B2分别为600 W,200 W),我们观察到完全替代了热能需求。 (ii)在这一关键权力之上没有完全替代。由于不同区域内重要的温度不均匀性以及空气更新的流动结​​构,再加上设备功耗朝着空载时段的转移,因此着重说明了缺少替代项的原因。它显示了对电器进行动态热建模的必要性,以实现更准确,更有效的建筑能耗模拟和能源管理,尤其是对于低能耗建筑。 (C)2016 Elsevier B.V.保留所有权利。

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