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Continuous automated ventilation heat recovery efficiency performance assessment using building monitoring system

机译:连续自动通风热回收效率性能评估使用建筑监控系统

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The performance of ventilation heat recovery has high impact to the total energy consumption of modern buildings and its sub-optimal performance results in a remarkable energy penalty. There are several issues, which can significantly affect the heat recovery efficiency such as the inaccuracy of sensors, errors in control systems, mechanical defects and incorrect setting of the system. In addition, the direct comparison of the designed and measured heat recovery efficiency is not necessarily meaningful due to varying boundary conditions e.g. mass flow rates. The main focus of this paper is to develop and demonstrate a simple automated method for monitoring the heat recovery efficiency of ventilation units using building monitoring system (BMS). As the supply and extract air mass flows and temperatures may differ from the calculated initial design parameters, the proposed solution is to analyse the heat recovery efficiency using the number of transfer unit (NTU) method. With this method the efficiency is always calculated by the limiting mass flow, meaning that the warm exhaust air can not transfer more energy to the cold supply air than it is able to contain. As a result, the NTU method gives us the possibility to continuously compare the result to the temperature efficiency declared by the producer of the unit. The developed method demonstrated that the application of NTU method enables identifying sub-optimal performance of ventilation heat recovery, which would not have been revealed by direct comparison of temperature efficiencies. In some cases, low measured temperature efficiency was associated with problems not connected to the heat recovery heat exchanger. The method also enabled to estimate the additional heating costs due to the decreased heat recovery efficiency.
机译:通风热回收的性能对现代建筑的总能量消耗具有很高的影响,其次优性能导致了显着的能量惩罚。有几个问题,可以显着影响传感器不准确的热回收效率,控制系统的错误,机械缺陷和系统的不正确设置。另外,由于变化的边界条件,设计和测量的热回收效率的直接比较不一定是有意义的。质量流量。本文的主要焦点是开发和展示一种简单的自动化方法,用于使用建筑监测系统(BMS)监测通风装置的热回收效率。随着供应和提取空气质量流动和温度可能与计算出的初始设计参数不同,所提出的解决方案是使用转移单元(NTU)方法的数量来分析热回收效率。利用这种方法,始终通过限制质量流量来计算效率,这意味着热排出空气不能将更多的能量转移到冷水供气而不是能够含有的。结果,NTU方法使我们能够将结果与本机的生产者声明的温度效率连续比较。开发方法表明,NTU方法的应用能够识别通风热回收的次优性能,这将通过直接比较升温来揭示。在一些情况下,低测量的温度效率与未连接到热回收热交换器的问题相关。该方法还启用了由于减少的热回收效率而估计额外的加热成本。

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