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Energy analysis of a decentralized ventilation system compared with centralized ventilation systems in European climates: Based on review of analyses

机译:欧洲气候中的集中式通风系统与分散式通风系统的能量分析:基于分析的回顾

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In this study, the decentralized ventilation (DV) performance of a small air ventilator to replace natural ventilation for use in urban areas is analyzed and compared to conventional centralized ventilation (CV) systems in European climates. Selected European weather conditions were used to determine acceptable conditions for the operation of fan-assisted ventilation systems and to analyze the decentralized ventilation system's cooling and heating loads. Entire fan and pump loads of DV system are numerically calculated based on published data. Compared with a conventional centralized ventilation system, this system has shorter air transport distances and therefore entails lower pressure losses. In a decentralized system, fan speed and airflow rate are adjusted simply and effectively depending on indoor thermal conditions. A radiant panel with decentralized ventilation system (RPDV) is shown to have the lowest heating, ventilation, and air conditioning (HVAC) energy consumption because it not only minimizes supply and exhaust air pressure losses, but can also be operated as a fan-assisted natural ventilation system during periods when outdoor air can be used without additional thermal loads. Based on numerically calculated and measured data, this study newly adds fan and pump energy analysis of decentralized ventilation system compared to centralized ventilation systems. This study shows the fan and pump energy consumption with analysis of fan-assisted DV system considering outdoor weather condition in European climate. (C) 2015 Elsevier B.V. All rights reserved.
机译:在本研究中,分析了小型空气呼吸机代替市区内自然通风的分散通风(DV)性能,并将其与欧洲气候下的常规集中通风(CV)系统进行了比较。选择的欧洲天气条件用于确定风扇辅助通风系统运行的可接受条件,并分析分散式通风系统的冷却和加热负荷。 DV系统的整个风扇和泵负载是根据已发布的数据进行数值计算的。与传统的集中通风系统相比,该系统的空气传输距离更短,因此压力损失也更低。在分散式系统中,可以根据室内热条件简单有效地调节风扇速度和风量。具有分散通风系统(RPDV)的辐射板显示出最低的供暖,通风和空调(HVAC)能耗,因为它不仅可以最大程度地减少供气和排气压力损失,而且还可以通过风扇辅助操作在不增加额外热负荷的情况下可以使用室外空气的自然通风系统。基于数值计算和测量数据,本研究与集中式通风系统相比,新增了分散式通风系统的风机和泵能量分析。这项研究通过分析考虑了欧洲气候下室外天气情况的风扇辅助DV系统,显示了风扇和泵的能耗。 (C)2015 Elsevier B.V.保留所有权利。

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