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Input-Output Approach to Predicting the Energy Efficiency of Residential Water Heaters-Testing of Gas Tankless and Electric Storage Water Heaters

机译:投入-产出方法预测住宅热水器的能效-储气罐和储水式热水器的测试

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摘要

A study was conducted to evaluate the potential for using a linear relationship between the power input to a residential water heater and the output of thermal energy in hot water for rating the energy efficiency of the unit. This approach has the potential for simplifying the currently used test method while providing information that can be used to predict performance under different demands. A gas tankless water heater and an electric storage water heater were tested under a range of output rates, and linear relationships were developed for each system. The equations were then used to predict the input required to provide particular output rates demanded by the user. The accuracy of these models was assessed against five different 24-hour simulated-use tests, consisting of the approach from the current test method and alternative profiles that involved more draws of hot water and varying amounts of daily hot water removedfrom the water heaters. Discrepancies between predicted water heater efficiencies and measured efficiencies indicate that a linear model relating input rate and output rate may not be appropriate for fully describing residential water heater performance. This paper discusses the challenges in applying a linear model for predicting the daily efficiency of a water heater.
机译:进行了一项研究,以评估使用住宅热水器的功率输入与热水中的热能输出之间的线性关系来评估设备的能效的潜力。这种方法有可能简化当前使用的测试方法,同时提供可用于预测不同需求下的性能的信息。在输出速率范围内测试了无气罐式热水器和蓄电式热水器,并为每个系统建立了线性关系。然后,使用这些方程式来预测提供用户所需的特定输出速率所需的输入。这些模型的准确性是通过五种不同的24小时模拟使用测试进行评估的,这些测试包括当前测试方法的方法和替代性配置文件,其中涉及更多的热水抽取量和每天从热水器中去除的热水量的变化。预测的热水器效率与实测效率之间的差异表明,与输入速率和输出速率相关的线性模型可能不适用于完整描述住宅热水器的性能。本文讨论了应用线性模型预测热水器的日常效率所面临的挑战。

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  • 来源
    《ASHRAE Transactions》 |2011年第2期|p.521-532|共12页
  • 作者单位

    Building Environment Division, National Institute of Standards and Technology, Gaithersburg, MD;

    Building Environment Division, National Institute of Standards and Technology, Gaithersburg, MD;

    Building Environment Division, National Institute of Standards and Technology, Gaithersburg, MD;

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