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HIGH EFFICIENT INTEGRATED CO_2 REFRIGERATION SYSTEMS WITH EJECTORS AND PIVOTING COMPRESSOR ARRANGEMENTS

机译:具有喷射器的高效集成CO_2制冷系统和枢转压缩机布置

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Equipment manufacturers of refrigeration units are facing challenges related to the legislative requirements forcing them to implement less conventional refrigerants with lower Global Warming Potential (GWP). The newly introduced next generation of hydrofluorocarbons (HFCs) with ultra-low GWPs do have a very short (atmospheric) lifetime, however, the decomposing products are highly toxic in combination with water, short life HFCs and their blends do not represent a safe and sustainable alternative. CO_2, a natural working fluid applied since the early days of refrigeration, has demonstrated to be an energy efficient and environmentally benign alternative. Design effort has to be made to develop affordable high efficient integrated refrigeration systems applicable in high ambient temperature areas. One way to reduce size and costs is to adapt the number of compressors at the various suction groups. Another enhancement possibility is the utilisation of the normally unused expansion work by applying ejectors. The article will describe how enhancement measures like ejectors and pivoting compressors will influences the energy efficiency and can help to downsize systems. Cold energy storage is also an interesting feature, supporting the refrigeration systems with accumulated cooling capacity, applicable during peak capacity periods, without additional compressors.
机译:设备制造商的制冷单元面临与立法要求相关的挑战,强迫他们实施较少的全球变暖潜力(GWP)的常规制冷剂。新引进的下一代氢氟烃(HFCs)具有超低GWPS确实具有非常短(大气)寿命,然而,分解产物与水的组合具有高毒性,短暂的寿命,其混合物并不代表安全和可持续的替代品。 CO_2,自制冷早期施加的自然工作流体,已经证明是能够有效和环境良性的替代方案。必须使设计努力开发适用于高环境温度区域的实惠的高效综合制冷系统。减少尺寸和成本的一种方法是调整各种吸力组的压缩机的数量。另一种增强的可能性是通过应用喷射器利用通常未使用的扩展工作。本文将描述喷射器和枢转压缩机等增强措施将影响能源效率,并可以帮助减少系统。冷能量存储也是一个有趣的功能,支持具有累积冷却能力的制冷系统,适用于峰值容量周期,无需额外的压缩机。

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