卧式电热水器一次热替换元件事件的特性分析

T. Reddy, Yasteer Sewpersad, Yu-Chieh J. Yen
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引用次数: 0

摘要

开发了一个统计模型来了解从卧式热水器中抽取的水的体积与它的一次热替换的关系。设计实验是为了获得可用于建立模型的无偏数据。该模型结合了基于线性和多元回归的方法,使用热水器加热模式中观察到的一次加热持续时间。确定了一次加热事件与抽气量之间的线性关系。测试表明,如果不考虑环境温差,可以将精度区间提高到16%。利用试验数据点对模型进行扩展,将误差减小到6%。该方法在模型的早期迭代中无需考虑分层引起的电热水器(EWH)内部复杂的热力学,从而降低了物理模型的复杂性。通过简单的线性回归模型,发现在大流量下的高容积抽气量可以更好地将集中的能量分布在EWH顶部,从而降低加热元件所需的能量。这个温度曲线被认为是恒温器在EWH中定位的结果。环境温度也被发现对拉拔事件的加热元件的能量输入有重大影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characterisation of the primary heat replacement element event for a horizontal electric water heater
A statistical model is developed to understand the volume of water drawn from a horizontal water heater in relation to its primary heat replacement. An experiment is designed to obtain unbiased data that can be used to build a model. The model is a combination of linear and multivariate regression-based methods that uses the primary heating duration observed on the water heater's element heating pattern. It is determined that the relation between the primary heating event and the draw volume is linear. Testing showed that ambient temperature differences can increase the precision interval to 16% if not accounted for. Points of test data are used to expand the model and reduce the error to 6%. This method can reduce the complexity of physical models by eliminating the need to consider the complex thermodynamics within the electric water heater (EWH) caused by stratification for this early iteration of the model. Through the use of a simple linear regression model, it is found that a high volume draw at a high flow rate reduces the energy required by the heating element by distributing the concentrated energy at the top of the EWH better. This temperature profile is assumed to be a result of the positioning of the thermostat in the EWH. The ambient temperature is also found to have a significant impact on energy input of the heating element for a draw event.
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