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Cooperation of a Horizontal Ground Heat Exchanger with a Ventilation Unit During Winter: A Case Study on Improving Building Energy Efficiency

机译:冬季通风装置的水平地面热交换器的合作:以提高建筑能效的案例研究

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Renewable energy sources have a significant impact on improving a building's energy balance.These sources are increasingly used in modern construction.One such source is a ground air heat exchanger(earth-air heat exchanger-EAHX),which is used in a building's mechanical ventilation system.This solution allows for the initial preparation of inlet air in a ventilation unit prior to the exhaust air energy recovery process(recuperation).As a result,the solution reduces the energy demand for the heating or cooling of rooms.This article expands upon a previous study on the possibilities of improving energy efficiency of a horizontal earth-air heat exchanger(EAHX)working in cooperation with a ventilation unit.This study adds to the knowledge gained in the previous study(Romanska-Zapala et al.,2017)performed during the summer of 2016.This previous study found that,in the summer,the continuous operation of these exchangers is not optimal;therefore,there is a need for dynamic control of the ventilation unit's fresh air source.This is due to changes in the exchanger's operating status between heating and cooling,as a result of external temperature fluctuations.The thesis statement of this previous paper emphasized that this relationship is not only appropriate on an annual basis for the transitional seasons(spring and autumn),but also on individual days during the potentially most favorable seasons of exchanger work(summer and winter).This article presents the results of in situ measurements of the horizontal,tubular ground air heat exchanger which supports building heating by preheating the inlet air of the cooperating ventilation unit in the winter season,in southern Polish climatic conditions.In particular,this article provides details on the experimental verification of the previous paper's thesis regarding the possibility of sub-optimal performance of an EAHX exchanger subject to continuous operation during the winter season.The experiment in this paper was performed using a ventilation unit(intake-exhaust)connected to three independent fresh air sources: a direct external air intake located on the wall,and two air intakes located outside of the building that directs air into the pipes of two earth-air heat exchangers.This article illustrates how the exchanger's work changes the ventilation unit's inlet air temperature.For a majority of the experiment,the exchanger-ventilation unit system was working optimally.Therefore,the system did not require intervention of the control system.However,due to several temporary increases in outdoor temperature,the occasional cooling state operation of the EAHX exchanger was also recorded.Even before the occurrence of these undesirable states,an exchanger should be switched off and a bypass should be used to directly collect external air and reduce the unnecessary load of electric fan drives.Considering the results of this study,it
机译:可再生能源对改善建筑能量平衡有重大影响。这些来源越来越多地用于现代建筑。该来源是一个地面空气热交换器(地球 - 空气热交换器-eAHX),其用于建筑的机械通风该解决方案允许在排气空气能量回收过程(恢复)之前的通风单元中的入口空气初始准备.AS,解决方案降低了对房间加热或冷却的能量需求。本文扩展先前关于改善与通风单元合作工作的水平地球热交换器(EAHX)能效的可能性研究。本研究增加了前一项研究中获得的知识(Romanska-Zapala等,2017)在2016年夏天进行。本研究发现,在夏季,这些交换机的连续运行不是最佳的;因此,需要动态控制Venti该单位的新鲜空气来源。这是由于外部温度波动的加热和冷却之间的交换器运行状态的变化。本文的论文陈述强调这种关系不仅适当于每年的时间过渡季节(春季和秋季),也是在交易所工作(夏季和冬季)可能最有利的季节中的个人日。这篇文章介绍了支持建筑加热的水平管状地面空气热交换器的原位测量结果通过在冬季预热配合通风单元的入口空气,在南部波兰气候条件下。特别是,本文提供了关于前论文论文的实验验证关于EAHX交换机主题的次优绩效的可能性的详细信息在冬季连续运作。本文的实验是使用的通风单元(进气排气)连接到三个独立的新鲜空气源:位于墙壁上的直接外部进气,以及位于建筑物外面的两个进气口,将空气引入两个地球热交换器的管道。文章说明了交换器的工作原理如何改变通风单元的入口空气温度。对于大多数实验,交换机通风单元系统正在最佳地工作。因此,由于几个临时,系统不需要干预控制系统。然而,由于几个临时室外温度的增加,EAHX交换机的偶尔冷却状态操作也被记录。即使在这些不受欢迎的状态发生之前,应关闭交换机,旁路应用于直接收集外部空气并降低不必要的负荷电风扇驱动。这项研究的结果,它

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