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A combined energy and IAQ assessment of the potential value of commissioning residential mechanical ventilation systems

机译:结合能源和IAQ评估的住宅机械通风系统的潜在价值评估

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摘要

Limited data suggest that whole-house ventilation systems in California don't always perform as code and forecasts predict. Deficiencies occur because systems are usually field assembled without design specifications, and there is no consistent process to identify and correct problems. The value of such activities in terms of reducing energy use and improving indoor air quality (IAQ) is poorly understood. Commissioning such systems, either when they are installed or during subsequent building retrofits, is a step towards eliminating deficiencies and optimizing the trade-off between energy use and IAQ, The goal of this study was to determine the potential value of commissioning residential whole-house ventilation systems that are intended to comply with California's Title 24 residential ventilation requirements. A computer modeling approach was used to assess the impact on occupant health and building energy use of malfunctioning whole-house ventilation systems. Energy and IAQ impacts were quantified and then compared by using the Time Dependent Valuation (TDV) approach for energy and a Disability Adjusted Life Year (DALY) approach for IAQ. Results showed that health benefits dominated energy benefits independently of house size and climate. The metric for commissioning whole-house ventilation systems should be net present value of the combined energy and IAQ benefits to the consumer. Commissioning cost decisions should be made relative to that value even if that means ventilating to exceed the ASHRAE 62.2 minimum. As a consequence of combining IAQ and energy costs, the beginning of an approach to optimize the ventilation rates of homes was established.
机译:有限的数据表明,加利福尼亚州的整个房屋的通风系统并不总是能按法规和预测的要求运行。出现缺陷是因为系统通常是在没有设计规范的情况下现场组装的,并且没有一致的过程来识别和纠正问题。人们对这种活动在减少能源使用和改善室内空气质量(IAQ)方面的价值了解甚少。调试此类系统(无论是在安装时还是在随后的建筑物翻新中)是消除缺陷并优化能源使用和IAQ之间权衡的一步,此研究的目的是确定调试住宅整体房屋的潜在价值旨在符合加利福尼亚州《 Title 24》住宅通风要求的通风系统。计算机建模方法用于评估故障的全屋通风系统对乘员健康和建筑能耗的影响。对能源和IAQ的影响进行了量化,然后通过对能源使用时间依赖性评估(TDV)方法和对IAQ使用残疾调整生命年(DALY)方法进行比较。结果表明,与房屋面积和气候无关,健康效益占能源效益的主导地位。调试全屋通风系统的度量标准应该是能源和IAQ组合给消费者带来的净现值。即使该通风值超过了ASHRAE 62.2的最小值,也应根据该值做出调试成本决策。由于结合了室内空气质量和能源成本,因此开始了一种优化房屋通风率的方法。

著录项

  • 来源
    《Building and Environment》 |2013年第2期|194-201|共8页
  • 作者单位

    Residential Building Systems Croup, Environmental Energy Technologies Division, Lawrence Berkeley National Laboratory, Berkeley, CA 090-3084, United States;

    Residential Building Systems Croup, Environmental Energy Technologies Division, Lawrence Berkeley National Laboratory, Berkeley, CA 090-3084, United States;

    Residential Building Systems Croup, Environmental Energy Technologies Division, Lawrence Berkeley National Laboratory, Berkeley, CA 090-3084, United States;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    residential; commissioning; ventilation; energy; health; indoor air quality;

    机译:住宅;调试;通风;能源;健康;室内空气质量;

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