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Minimum airflow reset of single-duct VAV terminal boxes.

机译:单通道VAV接线盒的最小气流复位。

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摘要

Single duct Variable Air Volume (VAV) systems are currently the most widely used type of HVAC system in the United States. When installing such a system, it is critical to determine the minimum airflow set point of the terminal box, as an optimally selected set point will improve the level of thermal comfort and indoor air quality (IAQ) while at the same time lower overall energy costs. In principle, this minimum rate should be calculated according to the minimum ventilation requirement based on ASHRAE standard 62.1 and maximum heating load of the zone. Several factors must be carefully considered when calculating this minimum rate. Terminal boxes with conventional control sequences may result in occupant discomfort and energy waste. If the minimum rate of airflow is set too high, the AHUs will consume excess fan power, and the terminal boxes may cause significant simultaneous room heating and cooling. At the same time, a rate that is too low will result in poor air circulation and indoor air quality in the air-conditioned space.;Currently, many scholars are investigating how to change the algorithm of the advanced VAV terminal box controller without retrofitting. Some of these controllers have been found to effectively improve thermal comfort, indoor air quality, and energy efficiency. However, minimum airflow set points have not yet been identified, nor has controller performance been verified in confirmed studies.;In this study, control algorithms were developed that automatically identify and reset terminal box minimum airflow set points, thereby improving indoor air quality and thermal comfort levels, and reducing the overall rate of energy consumption. A theoretical analysis of the optimal minimum airflow and discharge air temperature was performed to identify the potential energy benefits of resetting the terminal box minimum airflow set points. Applicable control algorithms for calculating the ideal values for the minimum airflow reset were developed and applied to actual systems for performance validation. The results of the theoretical analysis, numeric simulations, and experiments show that the optimal control algorithms can automatically identify the minimum rate of heating airflow under actual working conditions. Improved control helps to stabilize room air temperatures. The vertical difference in the room air temperature was lower than the comfort value. Measurements of room CO2 levels indicate that when the minimum airflow set point was reduced it did not adversely affect the indoor air quality. According to the measured energy results, optimal control algorithms give a lower rate of reheating energy consumption than conventional controls.
机译:单管道可变风量(VAV)系统是目前美国使用最广泛的HVAC系统类型。安装这样的系统时,确定接线盒的最小气流设定点至关重要,因为最佳选择的设定点将改善热舒适度和室内空气质量(IAQ),同时降低总体能源成本。原则上,该最小速率应根据基于ASHRAE标准62.1的最低通风要求和该区域的最大热负荷来计算。计算此最小速率时,必须仔细考虑几个因素。具有常规控制顺序的接线盒可能导致乘员不适和能量浪费。如果将最小气流速率设置得过高,则AHU将消耗过多的风扇功率,并且接线盒可能会同时导致大量的室内供暖和制冷。同时,太低的速率将导致空调空间的空气流通不良和室内空气质量下降。;目前,许多学者正在研究如何在不进行改进的情况下改变高级VAV接线盒控制器的算法。已发现其中一些控制器可有效改善热舒适性,室内空气质量和能源效率。但是,尚未确定最小气流设定点,也没有在已确认的研究中验证控制器的性能。在本研究中,开发了可自动识别并重置接线盒最小气流设定点的控制算法,从而改善了室内空气质量和热量舒适度,并降低整体能耗率。对最佳最小气流和排气温度进行了理论分析,以确定重置接线盒最小气流设定点的潜在能量效益。开发了用于计算最小气流重置的理想值的适用控制算法,并将其应用于实际系统以进行性能验证。理论分析,数值模拟和实验结果表明,最优控制算法可以自动识别实际工况下的最小加热气流速率。改进的控制有助于稳定室内空气温度。室内空气温度的垂直差低于舒适度值。对室内二氧化碳水平的测量表明,当最小气流设定点降低时,它不会对室内空气质量产生不利影响。根据测得的能量结果,最佳控制算法的回热能耗率比常规控制方法低。

著录项

  • 作者

    Cho, Young-Hum.;

  • 作者单位

    The University of Nebraska - Lincoln.;

  • 授予单位 The University of Nebraska - Lincoln.;
  • 学科 Engineering Mechanical.;Energy.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 216 p.
  • 总页数 216
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;能源与动力工程;
  • 关键词

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