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Energy-Saving Scenarios of an Existing Swimming Pool with the Use of Simple In Situ Measurement

机译:使用简单原位测量的现有游泳池的节能方案

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Swimming is a good form of physical activity that keeps swimmers fit and healthy. In countries with cold climates, swimming is allowed only indoors. Since adequate water and air parameters must be ensured in these buildings, they are very energy-consuming. In new buildings, modern solutions can be used, thanks to which technologically advanced energy-saving systems can be used. Unfortunately, in existing buildings, it is not always possible to make technical changes, or they are associated with high financial expenses. In this article, a method of in situ measurement of selected air parameters is proposed, on the basis of which it is possible to suggest scenarios for changes in the control of air technology and parameters in order to achieve energy savings. The easy measurement method was applied in a typical swimming pool building, and energy-saving measurements were taken on the first day to obtain a baseline. Seven scenarios were analyzed that would lead to a reduction in energy consumption without the introduction of new elements into the facility. The main task was to find a solution that ensured adequate thermal comfort in the building. Significant energy savings were achieved in each scenario: 6-47 compared to measured energy consumption. To improve the energy efficiency of swimming pools, especially in the current energy crisis related to the economic and political situation, all methods for reducing the energy demand are desirable. The proposed assessment method will allow for energy-consuming elements and allow for changes in the use of equipment in the swimming pool building. However, the main objective is to maintain the thermal comfort of swimming pool users, as no savings can be achieved at the expense of worsening the feeling of building users.
机译:游泳是一种很好的体育活动形式,可以保持游泳者的健康。在气候寒冷的国家,只允许在室内游泳。由于这些建筑物必须确保足够的水和空气参数,因此它们非常耗能。在新建筑中,可以使用现代解决方案,因此可以使用技术先进的节能系统。不幸的是,在现有建筑物中,并不总是可以进行技术更改,或者它们与高昂的财务费用有关。本文提出了一种对选定的空气参数进行原位测量的方法,在此基础上可以提出改变空气技术和参数控制的方案,以实现节能。在典型的游泳池建筑中应用了简单的测量方法,并在第一天进行了节能测量以获得基线。分析了七种方案,这些方案可以在不引入新元素的情况下降低能源消耗。主要任务是找到一种解决方案,以确保建筑物中有足够的热舒适性。在每种情况下都实现了显着的节能:与测量的能耗相比,节省了 6-47%。为了提高游泳池的能源效率,特别是在当前与经济和政治形势相关的能源危机中,所有减少能源需求的方法都是可取的。拟议的评估方法将考虑耗能因素,并允许改变游泳池建筑中设备的使用。然而,主要目标是保持游泳池用户的热舒适度,因为不能以恶化建筑用户的感觉为代价来实现节省。

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