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Thermomechanical Performance of the Offset Crankshaft Heat Engine Driven by TiNiCu Shape Memory Alloys

机译:Tinicu形状记忆合金驱动的偏移曲轴热力发动机的热机械性能

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Geothermal hot springs are among the alternative clean energy sources to the fossil fuels for mitigating the current global warming crisis. However, the accessible geothermal water at the surface was mostly at low temperature, which impairs the practicality of harvesting these energy. Shape memory alloys (SMAs), which deform through the increased temperature, were adapted into the rotating mechanism as the actuators with the aims to convert the low-temperature heat into the mechanical work. This study utilized the helical spring-shaped TiNiCu SMAs as the actuators for the offset crankshaft heat engine. Performance of this engine was evaluated using rope brake dynamometer, by which the rotational speed, torque, and power were measured at the water temperature from 55-85°C. The results show that the engine performance increased with increasing water temperature and was dependent on the crankshaft arrangement. The offset angle of 30° was found to be optimal in this study with maximum torque of more than 5.8 N?m and maximum power of 3.9 W at 15.7 rpm when operating at water temperature of 85°C. This study shows that the heat engine driven by TiNiCu SMAs could harvest low-temperature energy from the geothermal hot springs with the maximum observable efficiency of around 1.4%.
机译:地热温泉是化石燃料的替代清洁能源,用于减轻当前的全球变暖危机。然而,表面的可进入地热水主要在低温下,这损害了收获这些能量的实用性。通过增加温度变形的形状记忆合金(SMA)被调整为旋转机构,作为致动器,其目的是将低温热量转化为机械工作。该研究利用螺旋弹簧形Tinicu Smas作为偏移曲轴热发动机的致动器。使用绳索制动测功机评估该发动机的性能,通过该绳索制动测功机评估水温从55-85℃的水温测量的转速,扭矩和功率。结果表明,发动机性能随着水温的增加而增加,并且依赖于曲轴布置。在该研究中发现30°的偏移角在该研究中最佳,最大扭矩大于5.8nΩm,最大功率为3.9W,在85℃的水温下运行时为15.7rpm。本研究表明,由Tinicu SMA驱动的热力发动机可以从地热温泉中收获低温能量,最大可观察效率约为1.4%。

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