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Preliminary experimental study of single screw expander prototype

机译:单螺杆膨胀机原型的初步实验研究

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摘要

Efficient heat conversion of low temperature heat source is a key problem for energy saving, especially in the fields of waste heat recovery and renewable energy utilization. At present, technical bottleneck for low temperature thermal power is lack of suitable prime mover. As the core component of general machinery, single screw has many good features, including balanced loading of the main screw, low leakage, low noise, low vibration and long working life, etc. If single screw technology is applied to the field of expander, more efficient prime mover would be possibly obtained, compared with pistol expander, scroll expander and twin screw expander, and so on. In order to verify the performance of the prototype, the function experiment was made. In this paper, compressed air was used as working fluid and performance test for the prototype was finished at conditions including different intake flow, different humidity, constant torque, and constant rotational speed. From the experimental data, it is shown that the power output is 5 kW, exhaust temperature is -45℃, difference between the import and export is about 62℃, in the conditions of inlet pressure at 0.6 MPa and rotational speed 2850 rpm. The test results also show that the single screw expander has good part load characteristics. From the analysis of experimental data, we found that adiabatic efficiency of the prototype is not so high probably because of poor lubrication. The lubrication problem will be considered in the next work.
机译:低温热源的高效热转换是节能的关键问题,特别是在废热回收和可再生能源利用领域。目前,缺乏合适的原动机是低温火电的技术瓶颈。单螺杆作为通用机械的核心部件,具有主螺杆负载均衡,低泄漏,低噪音,低振动,使用寿命长等优良特性。如果将单螺杆技术应用于膨胀机领域,与手枪式膨胀机,涡旋式膨胀机和双螺杆膨胀机等相比,可以获得效率更高的原动机。为了验证原型的性能,进行了功能实验。本文将压缩空气用作工作流体,并在不同进气流量,不同湿度,恒定转矩和恒定转速的条件下完成了原型的性能测试。从实验数据可以看出,在进口压力为0.6 MPa,转速为2850 rpm的条件下,输出功率为5 kW,排气温度为-45℃,进出口差约为62℃。测试结果还表明,单螺杆膨胀机具有良好的部分负荷特性。通过对实验数据的分析,我们发现原型的绝热效率不是很高,可能是因为润滑不良。下一个工作将考虑润滑问题。

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