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МЕТОДОЛОГІЧНІ ПІДХОДИ ДО ВИЗНАЧЕННЯ ХОЛОДОПРОДУКТИВНОСТІ СИСТЕМ КОНДИЦІЮВАННЯ ПОВІТРЯ ЗА ЗМІННИХ КЛІМАТИЧНИХ УМОВ

机译:测定可变气候条件空调系统冷水生产率的方法论方法

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摘要

One of the most attractive reserves for improving the energy efficiency of air conditioning systems is to ensure the operation of refrigeration compressors in nominal or close to nominal modes by selecting a rational design heat load and distributing it within its design value according to the behavior of the current heat load under variable current climatic conditions to provide the maximum or close to maximum annual cooling capacity generation according to cooling duties of air conditioning. In the general case, the overall range of current thermal loads of any air conditioning system includes a range of unstable loads associated with the precooling of ambient air with significant fluctuations in cooling capacity according with current climatic conditions, and a relatively stable range of cooling capacity consumed to further reduce air temperature from a certain threshold temperature to the final outlet temperature. It is quite obvious that a stable range of heat load can be ensured within operating a conventional compressor in a mode close to the nominal mode while precooling the ambient air with significant fluctuations in heat load requires regulation of the cooling capacity through the use of a variable speed compressor. Thus, in response of the behavior of the change in current heat loads, any air conditioning system, whether the central air-conditioning system with its heat procession in a central air conditioner, or a combination thereof with a local recirculation system of indoor air, essentially consists of two subsystems: pre-cooling the ambient air and then cooling it to the set point temperature. The proposed method of distribution of design heat load depending on the behavior of the current heat load is useful for the rational design of central air conditioning systems and their combined versions with the local air conditioning system.
机译:提高空调系统的能效的最具吸引力的储备之一是通过选择合理的设计热负荷并根据其设计价值在其设计价值内分布在标称或靠近标称模式中的制冷压缩机的操作。当前热负荷在可变电流气候条件下,根据空调的冷却义务提供最大或接近最大年冷却能力的发电。在一般情况下,任何空调系统的电流热负荷的整体范围包括与环境空气的预冷相关的一系列不稳定的负载,根据当前气候条件,以及相对稳定的冷却能力范围消耗以进一步将空气温度从一定阈值温度降低到最终出口温度。很明显,在靠近标称模式的模式下,可以确保稳定的热负荷范围在靠近标称模式的模式下,同时在预先冷却环境空气中,通过使用变量,需要调节冷却能力的冷却能力。速度压缩机。因此,响应电流热负荷变化的行为,任何空调系统,中央空调系统是否具有其在中央空调中的热处理,或其组合与室内空气的局部再循环系统,基本上由两个子系统组成:预先冷却环境空气,然后将其冷却到设定点温度。根据电流热负荷的行为的提出的设计热负荷分布方法对于中央空调系统的合理设计及其与局部空调系统的合并版本有用。
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