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首页> 外文期刊>Diffusion and Defect Data. Solid State Data, Part B. Solid State Phenomena >Methodology of comparative studies on air-handling units with heat recuperation
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Methodology of comparative studies on air-handling units with heat recuperation

机译:带有热回收的空气处理机组的比较研究方法

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摘要

The increasing prices of energy and the drive to reduce the emission of greenhouse gases into the atmosphere observed in the recent years have contributed to the intensive development of research on how to reduce the energy consumption of buildings. The confirmations of the current trends are the formal and legal regulations of the European Union that require the buildings to be passive and "zero-energy" in the near future. The introduction of new elements helping one to save energy in the structure of a building requires their formal verification and the confirmation of their safety, effectiveness, and parameters crucial from the point of their application in residential buildings and offices. The authors present an original prototype of an innovative device and a methodology of conducting studies on air-handling units with heat recuperation used in passive and energy-saving buildings. They also discuss the structure and the modus operandi of the system that reconstructs the actual operating conditions of a tested object. The system was used for tests on the tightness of several air-handling units, which also aimed at the verification of their thermal efficiency and the effectiveness of the recuperation of humidity. Air-handling unit tests came from different manufacturers, and they all had the function of heat recuperation. The authors present the results of their investigations that enabled the assessment of the safety of the objects tested, and they also facilitated the comparison of their performance parameters deciding on the energy effect. The tests also formed the foundation for the verification of the developed research system.
机译:近年来观察到的能源价格上涨和减少温室气体向大气排放的动力推动了关于如何减少建筑物能源消耗的研究的深入发展。当前趋势的确认是欧盟的正式和法律法规,该法规要求建筑物在不久的将来成为被动和“零能耗”。引入新元素以帮助人们节省建筑物结构的能量需要对其进行正式验证,并确认其安全性,有效性和参数(从它们在住宅建筑物和办公室中的应用角度出发)。作者介绍了一种创新设备的原始原型,以及一种对被动和节能建筑中使用的具有热回收功能的空气处理机组进行研究的方法。他们还讨论了重建被测对象实际操作条件的系统的结构和操作方式。该系统用于测试多个空气处理单元的密封性,其目的还在于验证其热效率和湿度恢复的有效性。空气处理单元测试来自不同的制造商,并且都具有回热功能。作者介绍了他们的研究结果,这些结果能够评估被测物体的安全性,并且还有助于比较决定其能量效应的性能参数。这些测试还为验证已开发的研究系统奠定了基础。

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