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Heating and Cooling Hybrid System and Method for Its Calculation and Design

机译:冷热混合系统及其计算设计方法

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摘要

In this article newly developed heating and cooling hybrid system is discussed. The system combines a heat pump, heating boiler and solar air heater. Low temperature source of heat pump is a gas mixture composed of waste warm gases, like inside used ventilation air, flue gases of heating boiler (smock), as well as outside air, heated in solar air heater. The evaporator of heat pump is installed in waste warm gases mixing chamber, aiming at avoiding the main disadvan¬tage of ordinary air sourced heat pump, in case of which the evaporator surface in wintertime is covered with ice crust that obstructs movement of air through the evaporator of heat pump. To solve the problem it is suggested to create a mixture of waste warm gases gathered in a gas mixing chamber and serving as heat source. A method for calculation and design of the new system was developed for both winter heating and summer cooling of a building. The energy and economic investigation based on mathematical model proved rather high cost effectiveness and energy efficiency of developed heating and cooling hybrid system.
机译:本文讨论了新开发的加热和冷却混合系统。该系统结合了热泵,供暖锅炉和太阳能空气加热器。热泵的低温源是由废热气体组成的气体混合物,例如在室内使用的通风空气,供暖锅炉(工作服)的烟道气以及室外空气,这些气体在太阳能空气加热器中加热。热泵的蒸发器安装在废气余热混合室中,目的是避免普通空气源热泵的主要缺点,在这种情况下,冬季的蒸发器表面覆盖有结冰的结壳,阻碍了空气通过热交换器的运动。热泵的蒸发器。为了解决该问题,建议产生收集在气体混合室中并用作热源的废热气体的混合物。开发了一种用于新系统的计算和设计的方法,用于建筑物的冬季供暖和夏季供冷。基于数学模型的能源和经济研究证明,开发的加热和冷却混合系统具有较高的成本效益和能源效率。

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