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Airside Economizer- Comparing Different Control Strategies and Common Misconceptions

机译:空侧省煤器-比较不同的控制策略和常见的误解

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摘要

Air-side economizer is broadly adopted in building HVAC design and operations. When the system is properly designed and the control sequence is properly implemented, air-side economizer provides significant energy savings. The design and operation basics of the air-side economizer are well understood and documented. However, some confusion and misconceptions do exist and are widely spread. When the economizer is not designed or implemented properly, an air handler cannot take the full advantage of "free cooling", and, in some cases, could even cause significant energy waste.This paper first introduces the fundamentals of the airside economizer and the typical control sequences. It goes on to discuss the determination of the activation temperature that enables or disables the dry-bulb temperature based economizer operation. The ?best? activation temperatures that maximize the energy savings can be calculated based on weather data and are different from location to location. The activation temperatures for a few representative cities are presented. For drier weather regions, the activation temperatures are significantly higher than those for hot and humid weather regions.The second part of the paper discusses the benefits of the enthalpy-enabled economizer and points out some important misconceptions that could significantly impact the energy savings of the economizer operation. Specifically, it challenges the simplistic control strategy for the enthalpy-based economizer control that is commonly used in the industry. Some of the questions this paper tries to answer include:1. What is the optimal activation temperature for a temperature-based economizer that provides the most energy savings?2. How does enthalpy-based economizer compare with the temperature-based economizer in energy savings?3. Does an economizer always save energy when the outside air enthalpy is below the return air enthalpy?4. Is it necessary for the outside air enthalpy to be lower than the return air enthalpy to enable the economizer and save energy?5. What happens if the economizer control fails? What are the potential penalties?
机译:空气节约器在建筑HVAC设计和运营中被广泛采用。当正确设计系统并正确执行控制顺序时,空气侧节能器可节省大量能源。空气侧节能器的设计和操作基础已得到充分理解和记录。但是,确实存在一些困惑和误解,并且这种误解已经广泛传播。如果节煤器的设计或实施不当,空气处理机将无法充分利用“自然冷却”的优势,在某些情况下甚至可能造成大量的能源浪费。本文首先介绍了节气筒的基本原理和典型控制序列。接下来讨论了激活温度的确定,该激活温度可启用或禁用基于干球温度的省煤器操作。最好的?可以根据天气数据计算出使节能最大化的激活温度,并且各个位置的激活温度不同。介绍了一些代表性城市的活化温度。在较干燥的天气区域,活化温度明显高于在炎热和潮湿的天气区域。本文的第二部分讨论了采用焓的节能器的好处,并指出了一些重要的误解,这些误解可能会显着影响节能的节能效果。省煤器运行。特别是,它挑战了行业中常用的基于焓的节能器控制的简单控制策略。本文试图回答的一些问题包括:1。提供最大节能量的基于温度的节能器的最佳激活温度是多少?2。在节能方面,基于焓的节能器与基于温度的节能器相比如何?3。当外部空气焓低于回流空气焓时,省煤器是否总是节省能量?4。为了使省煤器节能并节省能源,外部空气焓是否必须低于返回空气焓?5。如果省煤器控制失败怎么办?可能的处罚是什么?

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