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CCLEP Reduces Energy Consumption by More than 50% for a Luxury Shopping Mall

机译:CCLEP将豪华购物中心的能耗降低了50%以上

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摘要

The Continuous Commissioning Leading Project (CCLEP) process is an ongoing process to apply system optimization theory and advanced technologies in commercial retrofit projects. The CCLEP process was applied to a luxury shopping mall and office building. The case study building has ten single fan dual-duct VAV AHUs, 123 dual-duct pneumatic controlled pressure independent terminal boxes, and a central heating and cooling plant. Major retrofit efforts include upgrading pneumatic to DDC controls for all AHUs, installing main hot deck dampers, replacing the boiler, installing VFD on fans andpumps, and installing Fan Airflow Stations (FAS) and Pump Water/low Stations (PWS). This paper presents the optimal control strategies, which include main hot deck damper control, supply fan control integrated with FAS, return fan control, optimal control for terminal boxes, chilled water temperature and chilled water pump speed control, hot water temperature and hot water pump speed control. Boiler size was optimized at the time of replacement while the performance was measured and verified. The measured hourly utility data after CCLEP show that annual HVAC electricity consumption is reduced by 56% and gas use is reduced by 36%.
机译:连续调试领导项目(CCLEP)流程是将系统优化理论和先进技术应用于商业改造项目的持续流程。 CCLEP流程已应用于豪华购物中心和办公楼。案例研究大楼有十个单风扇双通道VAV AHU,123个双通道气动可控压力独立接线盒以及一个中央供暖和制冷设备。主要的改造工作包括将所有AHU的气动控制升级为DDC控制,安装主要的热甲板风门,更换锅炉,在风扇和泵上安装VFD,以及安装风扇气流站(FAS)和泵水/低压站(PWS)。本文提出了最佳的控制策略,包括主甲板热风门控制,与FAS集成的送风机控制,回风风扇控制,接线盒的最佳控制,冷冻水温度和冷冻水泵速度控制,热水温度和热水泵速度控制。锅炉尺寸在更换时进行了优化,同时对性能进行了测量和验证。 CCLEP之后测得的每小时公用事业数据显示,每年的HVAC电力消耗减少了56%,燃气使用减少了36%。

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  • 来源
    《ASHRAE Transactions》 |2009年第2期|492-501|共10页
  • 作者单位

    Department of Architectural Engineering, University of Nebraska-Lincoln, Linclon, NE;

    Department of Architectural Engineering, University of Nebraska-Lincoln, Linclon, NE;

    Department of Architectural Engineering, University of Nebraska-Lincoln, Linclon, NE;

    Department of Architectural Engineering, University of Nebraska-Lincoln, Linclon, NE;

    Commercial Industrial Solutions at Omaha Public Power District, Omaha, NE;

    Commercial Industrial Solutions at Omaha Public Power District, Omaha, NE;

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