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Utilizing modulating-temperature setpoints to save energy and maintain alliesthesia-based comfort

机译:利用调制温度设定点以节省能源,维持基于艾率的舒适度

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One area with the greatest potential for energy savings in buildings is heating and cooling. However, it is often argued that any energy-saving techniques should not have a negative impact on comfort for inhabitants. This is where the concept of alliesthesia comes into play. This paper examines the impact of utilizing modulating temperature setpoints to take advantage of the pleasure experienced through change. Simulations were conducted using EnergyPlus to explore the potential for energy savings. It was found that savings of up to 5-15% could be achieved by modulating indoor temperatures in cooling applications. However, modulating temperature setpoints resulted in larger energy usage than constant setpoints in heating applications. Results from human comfort experiments show that modulating temperatures could lead to greater thermal pleasure than a constant temperature environment for cooling situations due to a resetting of the thermal comfort achieved when the indoor temperature is decreased. However, the same comfort benefits are not shown for heating situations. Nonetheless, the simulations and the comfort experiments together show potential for both energy savings and increased human comfort levels in cooling applications.
机译:建筑物节能最大的一个区域是加热和冷却。然而,经常认为任何节能技术都不应该对居民的舒适性产生负面影响。这就是艾利斯廷亚概念发挥作用的地方。本文探讨了利用调制温度设定点来利用通过变化所经历的乐趣的影响。使用EnergyPlus进行模拟来探索节能的潜力。结果发现,通过调制冷却应用中的室内温度,可以节省高达5-15%的节省。然而,调制温度设定点导致能量使用较大,而不是加热应用中的恒定设定值。人类舒适性实验的结果表明,由于当室内温度降低时,由于重置达到的热舒适性,调制温度可能导致恒温环境比恒温环境更大。但是,未显示相同的舒适益处以供暖情况。尽管如此,模拟和舒适实验在一起表明了能量节约和增加了冷却应用中的人类舒适水平的潜力。

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