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Analysis of passive thermal storage opportunities for heating system design

机译:分析供热系统设计的被动储热机会

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摘要

Heating and cooling load calculations are critical to size HVAC systems and determine energy use of their operations. The ASHRAE recommended heating load calculation model is most commonly used for heating load calculations. It adopts a simplified approach by considering only steady-state conductive heat transfer. However, due to thermal storage effect, heat generated in daytime may still be stored in buildings and released at a later time. Such assumption leads to significantly over-sized heating systems which are usually accompanied by high initial cost and higher cost of energy use. This study therefore examines the thermal response and passive storage characteristic of heavy construction for typical office building in continental United States. By allowing space air to drift to reasonably lower values, buildings need to be warmed up before being occupied in the morning. The worst case conditions might happen during warm-up or beginning of occupied hours. This article evaluates the optimal size of heating system which satisfies thermal comfort while taking advantage of passive thermal storage. Results show varying downsizing opportunities ranging from 14% to 54% across the United States. These results have the potential of establishing new heating device design standards for certain climate classifications.
机译:加热和冷却负荷的计算对于确定HVAC系统的规模并确定其运行的能耗至关重要。 ASHRAE建议的热负荷计算模型最常用于热负荷计算。通过仅考虑稳态传导热传递,它采用了简化的方法。但是,由于蓄热作用,白天产生的热量仍可能存储在建筑物中并在以后释放。这种假设导致供暖系统的尺寸过大,通常伴随着较高的初始成本和较高的能源使用成本。因此,本研究考察了美国本土典型办公建筑的重型建筑的热响应和被动存储特性。通过允许空间中的空气漂移到合理的较低值,需要在早晨占用建筑物之前对其进行加热。最坏的情况可能发生在预热或占用时间开始时。本文评估了可满足热舒适性同时利用被动式蓄热的最佳供暖系统尺寸。结果显示,在美国范围内,各种缩小规模的机会从14%到54%不等。这些结果有可能为某些气候分类建立新的加热装置设计标准。

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