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Tankless Electric Water Heater Diversified Electrical Demand in Residential Applications

机译:无罐式电热水器住宅应用中的电力需求多样化

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摘要

The impact of the high power requirements of large residential tankless electric resistance water heaters on electric system distribution wiring, transformers, breakers, and other equipment is of concern for both electric utilities and builders. This study was undertaken to analyze how probable and worst-case diversified electrical demand of large (28 kW) residential tankless electric water heaters compares to that of 4.5 kW storage (tank-type) water heaters in residential applications as a function of the number of households on a given electrical distribution circuit. This work developed methods to estimate both most likely (most statistically probable) and 3-sigma (statistically improbable but theoretically possible) worst-case diversified electrical demand for both tankless and tank-type water heaters as a function of the number of households. As expected, single households experience peak water heating electrical demands that correspond to the maximum power rating of the water heaters. However, time diversity of hot-water use increases rapidly as more households are added, resulting in diversified electrical demand of large tankless electric water heaters dropping rapidly from maximum values as the number of households on an electrical distribution system increases. Probable tankless water heater diversified electrical demand drops to levels only slightly higher than for tank-type units when even only a few (2 to 10) households are on a given distribution system, and it continues to drop even further as more households are added. Importantly, this work computes diversified electrical demand estimates using three totally different methods, showing that there are multiple analysis techniques that all lead to the same conclusions—namely that diversified electrical demand of 28 kW tankless electric water heaters rapidly drops to levels near to that of 4.5 kW storage electric water heaters when even only small numbers of households are considered.
机译:大型家用无罐式电阻热水器的高功率要求对电力系统配电线路,变压器,断路器和其他设备的影响,是电力公司和建筑商都应关注的问题。进行这项研究是为了分析大型(28 kW)家用无罐电热水器与住宅应用中4.5 kW储能(储罐式)热水器的可能和最坏情况下多样化的电力需求之间的关系,该需求是数量的函数。给定配电电路上的家庭。这项工作开发了一种方法来估算无罐式和罐式热水器的最可能情况(统计上最有可能)和3-sigma(统计上不可能,但理论上可能)最坏情况下的多样化电力需求,其作为家庭数量的函数。不出所料,单户家庭会遇到与热水器的最大额定功率相对应的峰值热水需求。但是,随着增加的住户数量,热水使用的时间多样性迅速增加,导致大型无罐式电热水器的多样化电力需求随着配电系统上的住户数目的增加而从最大值迅速下降。在给定的分配系统中,即使只有少数(2到10)户家庭,可能的无罐式热水器的多样化电力需求下降到仅比罐式单元略高的水平,并且随着更多家庭的增加,这种需求还将继续下降。重要的是,这项工作使用三种完全不同的方法来计算多样化的电力需求估算,表明存在多种分析技术,所有这些都能得出相同的结论,即28 kW无罐式电热水器的多样化电力需求迅速下降至接近水平。仅考虑少量家庭时的4.5 kW储水式电热水器。

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  • 来源
    《ASHRAE Transactions》 |2017年第2期|126-142|共17页
  • 作者

    Carl C. Hiller;

  • 作者单位

    Applied Energy Technology, Davis, CA.;

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  • 原文格式 PDF
  • 正文语种 eng
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