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Improved rotary vane expander for trans-critical CO_2 cycle by introducing high-pressure gas into the vane slots

机译:通过将高压气体引入叶片槽,改进了用于跨临界CO_2循环的旋转叶片膨胀机

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摘要

The loss of contact between the vane tip and cylinder wall was proven to cause a serious leakage and inefficient operation of the rotary vane expander, which was developed to replace the throttling valve in the trans-critical CO_2 refrigeration system. An improved structure was suggested by introducing high-pressure gas into the vane slots. This paper presents the experimental investigation of the improved prototype expander. By comparing the improved prototype with the original, focusing on the expander performance and the p-θ diagram as well as the vane movement, the effects of introducing high-pressure gas into the slots on the thermodynamic processes and performance were analyzed. The results showed that, by introducing the high-pressure gas into the vane slots, the volumetric efficiency was increased from 17% to 35%, and the isentropic efficiency improved from 15% to 45%, resulting in a maximum COP improvement of 27.2% compared to the throttling cycle under the same working conditions.
机译:事实证明,叶片尖端与气缸壁之间失去接触会导致旋转叶片膨胀器严重泄漏和低效运行,该旋转叶片膨胀器是为替代跨临界CO_2制冷系统中的节流阀而开发的。通过将高压气体引入叶片槽中,提出了一种改进的结构。本文介绍了改进的原型扩展器的实验研究。通过将改进的原型与原始原型进行比较,着眼于膨胀机性能和p-θ图以及叶片运动,分析了将高压气体引入槽中对热力学过程和性能的影响。结果表明,通过将高压气体引入叶片槽,体积效率从17%提高到35%,等熵效率从15%提高到45%,最大COP改善了27.2%与相同工作条件下的节流周期相比。

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