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Development of building thermal environment emulator to evaluate the performance of the HVAC system operation

机译:建筑热环境仿真器的开发评价HVAC系统运行的性能

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A "performance gap" arises when the actual value of building energy consumption during the operational phase deviates from the value predicted using simulation during the design phase. One cause of this performance gap is that operation is not ideal, as assumed in the simulation, and the control of the heating, ventilating, and air conditioning (HVAC) system is not optimized. These problems occur because the operator has not been trained sufficiently and/or the building automation system is not working as intended by the developer. Both problems are fundamentally caused by the fact that the quality of building operation cannot be quantitatively evaluated by comparison with other buildings because a building is a heterogenous, single-item product. To address the performance gap problem, we developed a method for quantitatively evaluating building operation using a precise simulation based on a thermal environment emulator. The emulator software was developed using the BACnet protocol as an interface to the real world and includes an occupant behavior model to enable the assessment of operation in terms of thermal comfort as well as energy performance. In this paper, we report on the program and network structure of the proposed emulator. In addition, we show the concrete results of changing the operational control, and we assess changes in energy performance and comfort from the perspective of Pareto efficiency.
机译:当在操作相位期间建造能量消耗的实际值偏离在设计阶段期间使用模拟的值偏离预测的值时,出现了“性能差距”。这种性能隙的一个原因是,如在模拟中所假设的情况下,操作不理想,并且未进行加热,通风和空调(HVAC)系统的控制。这些问题发生,因为操作员尚未充分培训和/或建筑自动化系统不按开发人员的预期工作。这两个问题都是基本上引起的,因为通过与其他建筑物的比较不能定量地评估建筑运行的质量,因为建筑物是异质的单项产品。为了解决性能缺口问题,我们开发了一种使用基于热环境仿真器的精确模拟来定量评估建筑工程的方法。仿真器软件是使用BACnet协议作为对现实世界的接口开发的,并且包括乘员行为模型,以便在热舒适度以及能量性能方面进行操作。在本文中,我们报告了所提出的仿真器的程序和网络结构。此外,我们展示了改变操作控制的具体结果,并从Pareto效率的角度评估能量性能和舒适性的变化。

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