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Frost reduction in mechanical balanced ventilation by efficient means of preheating cold supply air

机译:通过高效的预热供应空气的有效手段,机械平衡通风的霜冻降低

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This study has focused on evaluating the financial potential of wastewater and geothermal heat recovery systems in a multi-family building. The recovered heat was used to improve the performance of mechanical ventilation with heat recovery (MVHR) system during the coldest days in central Sweden. The main issue, which was targeted with these solutions, was to reduce frost formation in the system and hence increase its thermal efficiency. By looking at the life cycle cost over a lifespan of 20 years, the observed systems were being evaluated economically. Furthermore, statistical analyses were carried-out to counter the uncertainty that comes with the calculation. It was found that the studied wastewater systems have a high possibility of generating savings in this period, while the one fed by geothermal energy is less likely to compensate for its high initial cost. All designed systems however, managed to reduce operational cost by 35-45% due to lower energy usage.
机译:本研究重点是在多家庭建筑中评估废水和地热回收系统的金融潜力。回收的热量用于改善机械通气在瑞典中部最寒冷的日子中具有热回收(MVHR)系统的性能。主要问题是针对这些解决方案的主要问题是减少系统中的霜冻形成,因此提高其热效率。通过在20年的寿命期间查看生命周期成本,观察到的系统正在经济上进行评估。此外,进行统​​计分析以对计算计算随附的不确定性。结果发现,研究的废水系统在这一时期内具有高的可能性,而通过地热能量喂养的人不太可能弥补其高初始成本。然而,所有设计的系统都可通过使用较低的能量使用,从而减少了35-45%的运营成本。

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