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Development and applications of fan airflow station and pump water flow station in heating, ventilating and air-conditioning (HVAC) systems.

机译:风扇气流站和泵水流量站在加热,通风和空调(HVAC)系统中的开发和应用。

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摘要

This dissertation describes the development and implementation of a new flow measurement method: the fan airflow station (FAS) and pump water flow station (PWS). This new technology provides reliable & accurate flow measurement, implementation of volumetric control in AHUs and pump, and monitoring the building energy consumption.; It is very important to find an accurate and cost effective way to measure airflow or water flow in the HVAC industry. The FAS includes the fan head based (pressure-based) FAS and power-based FAS. The fan head based FAS measures airflow using the fan speed, fan head and in-situ fan curve. And the power based FAS measures airflow using the fan speed, fan power and in-situ power curve. The PWS can measure the water flow using similar algorithms. The theoretical background, models and instrumentation are presented in this dissertation.; The accuracy of the FAS and PWS primarily depends on the accuracy of the fan/pump curve, because the fan/pump speed and fan/pump head can be measured accurately. An in-situ measurement method has been developed in this dissertation to generate the fan curve without interrupting normal system operations using the manufacturer's fan curve. The in-situ method only requires one direct airflow measurement if the manufacturer's fan curve is available. This dissertation introduces the theoretical model, measurement procedure and case study results to provide the general guideline for the in-situ curve measurement.; The dissertation also describes and demonstrates FAS to the building pressure control (return fan speed control) and optimized supply fan speed control in real building HVAC systems. The application of PWS to the building energy monitoring, and optimized pump speed control are also introduced and demonstrated.; The theoretical model was experimentally tested, and the excellent agreement between the model and the experimental values was found. The results show that the FAS/PWS can measure the airflow or water flow rate accurately with very low cost. It can improve comfort and save building energy consumption significantly to apply the FAS/PWS to HVAC systems. The in-situ curve measurement method has been also experimentally proven in full-scale AHU systems and can be adopted by the HVAC industry.
机译:本文介绍了一种新的流量测量方法:风扇气流站(FAS)和泵水流量站(PWS)的开发和实现。这项新技术可提供可靠,准确的流量测量,在AHU和泵中执行体积控制以及监视建筑能耗。在HVAC行业中,找到一种精确且经济高效的方法来测量气流或水流量非常重要。 FAS包括基于风扇头(基于压力)的FAS和基于功率的FAS。基于风扇头的FAS使用风扇速度,风扇头和原位风扇曲线来测量气流。基于功率的FAS使用风扇速度,风扇功率和原位功率曲线来测量气流。 PWS可以使用类似的算法来测量水流量。本文介绍了理论背景,模型和仪器。 FAS和PWS的精度主要取决于风扇/泵曲线的精度,因为可以精确地测量风扇/泵的速度和风扇/泵的扬程。本文开发了一种现场测量方法,以在不中断使用制造商风扇曲线的正常系统操作的情况下生成风扇曲线。如果可以使用制造商的风扇曲线,则原位方法仅需要进行一次直接气流测量。本文介绍了理论模型,测量程序和实例研究结果,为现场曲线测量提供了一般指导。论文还描述和演示了FAS应用于实际建筑HVAC系统中的建筑压力控制(回风风扇速度控制)和优化的送风风扇速度控制。还介绍了PWS在建筑能耗监测中的应用以及优化的泵速控制。对理论模型进行了实验测试,发现模型与实验值具有很好的一致性。结果表明,FAS / PWS可以以非常低的成本准确地测量气流或水流量。将FAS / PWS应用于HVAC系统可以极大地提高舒适度并节省建筑能耗。原位曲线测量方法也已在全尺寸AHU系统中进行了实验验证,可被HVAC行业采用。

著录项

  • 作者

    Liu, Guopeng.;

  • 作者单位

    The University of Nebraska - Lincoln.;

  • 授予单位 The University of Nebraska - Lincoln.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 223 p.
  • 总页数 223
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

  • 入库时间 2022-08-17 11:40:12

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