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Unitary HVAC Premium Ventilation Upgrade

机译:整体式HVAC高级通风升级

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摘要

Rooftop packaged HVAC units (RTUs) serve over 40% of commercial building space with relatively reliable air conditioner and furnace operation; however, improper settings and failed controls—especially economizers—negatively impact indoor air quality and energy use. A field survey of over 300 packaged units found 91% with at least one problem and 64% with two or more problems. To date, utility HVAC programs, codes, and green standards have focused on higher efficiency units or unit tune-ups to the exclusion of ventilation and control upgrade opportunities. Hourly simulation over a range of U.S. climates shows that a comprehensive package of RTU control retrofits produced HVAC savings between 30% and 48%—ten times the savings from incrementally higher efficiency unit replacement. The proposed RTU control retrofits make economizers more reliable, improve ventilation control, and reduce energy use. The retrofits include stand-alone direct digital controls, demand controlled ventilation with integrated fan cycling or fan speed control, premium economizer control, and ventilation lockout during warm up. Field testing showed that for RTUs, a single return air carbon dioxide sensor was as effective as multiple-room sensors in allowing demand controlled ventilation to improve indoor air quality. Field testing of four RTUs with variable speed fans and solid-state DCV controllers was extended to include six additional units that are using DDC controls with fan cycling rather than fan speed reduction. The fan cycling control algorithms are demonstrated to comply with ASHRAE Standard 62.1.
机译:屋顶包装的HVAC单元(RTU)通过相对可靠的空调和熔炉操作为40%以上的商业建筑空间提供服务;但是,设置不当和控制失败(尤其是节能器)会对室内空气质量和能源使用产生负面影响。对300多个包装单元的现场调查发现,有91%的问题至少有一个,有64%的问题有两个以上。迄今为止,公用事业HVAC程序,规范和绿色标准已将重点放在更高效率的单元或单元调整上,从而排除了通风和控制升级的机会。在一系列美国气候条件下进行的每小时模拟显示,整套RTU控制改造可节省30%至48%的HVAC,这是效率更高的单元更换带来的节省的十倍。拟议的RTU控制改造可以使省煤器更加可靠,改善通风控制并减少能耗。改造包括独立的直接数字控制,带集成风扇循环或风扇速度控制的需求控制通风,高级节能器控制以及预热期间的通风锁定。现场测试表明,对于RTU,单回风二氧化碳传感器在允许需求控制的通风以改善室内空气质量方面与多房间传感器一样有效。扩展了对四个带有变速风扇和固态DCV控制器的RTU的现场测试,包括六个额外的单元,这些单元使用具有风扇循环而不是降低风扇速度的DDC控制。风扇循环控制算法已证明符合ASHRAE标准62.1。

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  • 来源
    《ASHRAE Transactions 》 |2011年第2011期| p.517-524| 共8页
  • 作者单位

    Associate Director in the Technical Research Group at Portland Energy Conservation Inc. (PECI), Portland, Oregon;

    Engineers at PECI, Portland, Oregon;

    Emerging Technology Program Manager at Bonneville Power Administration, Portland, Oregon;

    Engineers at PECI, Portland, Oregon;

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