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Small, High-Speed, Oil-Free Radial Turbo-compressors for Cooling Applications: Refrigerant Selection

机译:用于冷却应用的小,高速无油径向涡轮压缩机:制冷剂选择

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Emerging energy-efficient, oil-free radial centrifugal compressors seem promising for small to mid-capacity air conditioning and refrigeration applications. Compressor design must balance trade-offs among impeller diameter, bearing type, and refrigerant selection. This paper guides refrigerant selection for single-stage systems delivering 10-250 kW_(therm) of cooling at a representative evaporating temperature of 0°C. The viable oil-free bearing types, the impeller diameter for maximum compressor efficiency and the resulting system efficiency were determined for a set of representative refrigerants with normal boiling temperatures ranging from -51.7°C to +49°C. For residential scale cooling systems, low pressure refrigerants enable high energy efficiency with small size, high-speed centrifugal compressors and vapor-lubricated bearings. For commercial scale cooling systems, medium pressure refrigerants enable high energy efficiency with reasonable size, high-speed centrifugal compressors and vaporlubricated bearings. For commercial scale cooling systems, low pressure refrigerants enable higher energy efficiency with larger size, high-speed centrifugal compressors and magnetic bearings compared to medium pressure refrigerants with vapor-lubricated bearings. The preferred refrigerant enables combinations of system first and operating costs that are attractive for the intended markets, while meeting equipment reliability, operability and other constraints.
机译:新兴节能,无油径向离心式压缩机似乎很有前景,用于中产量空调和制冷应用。压缩机设计必须平​​衡叶轮直径,轴承型和制冷剂选择之间的折衷。本文将在0℃的代表性蒸发温度下输送10-250 kW_(Therm)的单级系统的制冷剂选择。用于最大压缩机效率的可行无油轴承类型和所得到的系统效率的一组代表性制冷剂测定了沸腾温度的一组代表性制冷剂,其沸腾温度范围为-51.7℃至+ 49℃。对于居民尺度冷却系统,低压制冷剂使得具有小尺寸,高速离心压缩机和蒸气润滑轴承的高能量效率。对于商业规模冷却系统,中压制冷剂具有高能量效率,具有合理的尺寸,高速离心压缩机和蒸发轴承。对于商业规模冷却系统,低压制冷剂与具有蒸汽润滑轴承的中压制冷剂相比,尺寸较大,高速离心压缩机和磁轴承较高,可实现更高的能量效率。优选的制冷剂使得系统的第一和操作成本能够与预期市场具有吸引力的系统的组合,同时满足设备可靠性,可操作性和其他限制。

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