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Heating, ventilation, domestic appliances - An energy integrated system concept for the household of the future

机译:加热,通风,家用电器 - 未来家庭的能量综合系统概念

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In order to achieve the targets of the EU climate protection strategy, the household sector with its overall high energy consumption offers great potential for efficiency improvements. Better insulated buildings and efficient heating and ventilation technologies can reduce the demand for energy regarding space heating and cooling. Efficiency improvements in domestic appliances can only be achieved with great effort. This paper presents an innovative system concept in which domestic appliances are thermally connected to the heating and ventilation system via the energiBUS, using a heat pump as the central heating and cooling device. The system benefits from the replacement of internal heating and cooling devices of the respective domestic appliances and the simultaneous utilization of both energy flows -warm and cold -of the heat pump. The system is analyzed by means of a detailed dynamic simulation model using MATLAB/Simulink (R). The component models included are experimentally validated and have deviations of less than 5%. The results show that a reduction of 35 kWh/a in total energy consumption is achieved and the COP of the heat pump can be improved from 3.3 to 3.5. In this context, the integrated design of the system control still has potential for optimization. (c) 2021 Elsevier Ltd. All rights reserved.
机译:为了实现欧盟气候保护策略的目标,家庭部门凭借其整体高能耗的效率促进了巨大潜力。更好的绝缘建筑和高效的加热和通风技术可以减少对空间加热和冷却的能量的需求。只能以巨大的努力实现家用电器的效率改进。本文介绍了一种创新的系统概念,其中国内电器通过Energibus热连接到加热和通风系统,作为中央加热和冷却装置。该系统从替换各种家用电器的内部加热和冷却装置中的益处,并同时使用两个能量流动和冷热泵。通过使用MATLAB / SIMULINK(R)的详细动态仿真模型来分析系统。包括的组件模型是通过实验验证的,并且具有小于5%的偏差。结果表明,实现了总能耗的35千瓦时/ A的减少,并且热泵的COP可以从3.3到3.5提高。在这种情况下,系统控制的集成设计仍然具有优化的可能性。 (c)2021 elestvier有限公司保留所有权利。

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