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Experimental Study on the Palatability Impacts of Potable Water as a Hydronic Medium

机译:饮用水作为循环介质的适口性影响的实验研究

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Hydronic systems installed in buildings utilize water to transport thermal energy within the building for heating and cooling purposes. These systems can be closed loop, where the water is chemically treated and circulated indefinitely, or they can be open loop, where the water is not treated and is effluxed as a result of occupant activities, such as bathing or cooking. Water in an open loop system may circulate within the system for a limited time before it is extracted from the system by occupant activities and replaced with new water from the local water supply. The implementation of open loop hydronic systems is becoming more common in multi-unit residential buildings, even though a number of questions regarding the use of such systems remain unanswered. One concern regarding the use of circulated potable water for heating purposes is the potential effects on the occupant perceptions of the palatability of the service water being delivered to their suites. In an open-loop HVAC system (Heating Ventilating, Air Conditioning System), heating water is subject to repeated thermal cycles and continuous recirculation, which creates the potential for chemical alterations of the materials present in the water or leaching of materials from the equipment and piping. Through the use of Flavor Profile Analysis (FPA) established by the American Water Works Association, and a multi-unit HVAC system constructed in a controlled environment, the palatability effects of the operational system were evaluated for a number of scenarios. The collected feedback from the study participants was then tabulated to quantify the impacts of using potable water as a recirculating heating medium on the perceptions of the occupants. The resulting observations led us to conclude that utilizing potable water as a heating medium has a negligible effect on the palatability of water in the system for average retention times under one day, and a non-objectionable, but noticeable, effect for higher average retention times.
机译:安装在建筑物中的水力系统利用水在建筑物内传输热能,以进行加热和冷却。这些系统可以是闭环的,其中水经过化学处理并可以无限期地循环,也可以是开环的,其中的水由于处理人员的活动(如沐浴或烹饪)而没有经过处理而被排出。开环系统中的水可能会在系统中循环有限的时间,然后乘员活动会从系统中抽取水,并用当地供水的新水代替。开环水力系统的实施在多单元住宅楼中变得越来越普遍,尽管有关使用此类系统的许多问题仍未得到解答。关于将循环的饮用水用于加热目的的一个关注是对运送到他们的套房的饮用水的适口性对乘员感知的潜在影响。在开环HVAC系统(供暖通风,空调系统)中,热水要经历反复的热循环和连续再循环,这可能会导致水中化学物质发生化学变化或从设备和设备中浸出材料。管道。通过使用美国水厂协会建立的风味特征分析(FPA)和在受控环境中构建的多单元HVAC系统,针对多种情况评估了操作系统的适口性效果。然后将研究参与者收集的反馈汇总成表格,以量化使用饮用水作为循环加热介质对乘员感知的影响。所得的观察结果使我们得出结论,使用饮用水作为加热介质,对于系统在一天之内的平均保留时间对水的适口性的影响可以忽略不计,而对于较高的平均保留时间的影响则无可辩驳,但值得注意。 。

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