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Performance Comparison of a Single Cylinder and a Dual Cylinder Free Piston Engine

机译:单缸和双缸无活塞发动机的性能比较

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Free piston linear engine alternators (FPLEA) may be designed following several different baseline configurations. Common designs include a translator that carries permanent magnets, with either one piston attached to one end of the translator, or a piston at each end of the translator. The single cylinder engine requires a reversing force from a spring so that it can operate, whereas, the dual cylinder version can operate without a spring. However, inclusion of stiff springs would serve to raise the operating frequency and reduces the cycle-to-cycle variations in a dual cylinder version. A MATLAB/SIMULINK numerical model with translator rod dynamics and in-cylinder thermodynamics was employed to predict the overall performance and efficiency of a FPLEA. This numerical model allowed comparison of different FPLEA configurations for a variety of design variables. First, a dual cylinder FPLEA design was considered where the spring constant was varied, changing the frequency of operation and the motion of the translator. The simulation results showed that without springs the motion was far from sinusoidal, and low in frequency and power, whereas the presence of stiff springs in the system strongly dictated nearly sinusoidal motion and high power at high frequency. Effects of other parameters such as stroke and bore were also examined. Finally, the same tests were carried out for a single cylinder FPLEA design. The simulation results showed that the dual cylinder engine produced twice the electrical power output with higher efficiency than the single cylinder engine for the same cylinder geometry.
机译:自由活塞式线性发动机交流发电机(FPLEA)可以按照几种不同的基准配置进行设计。常见的设计包括带有永磁体的平移器,该平移器的一个活塞连接到平移器的一端,或者在平移器的每一端都有一个活塞。单缸发动机需要来自弹簧的反向力才能运行,而双缸发动机则可以在没有弹簧的情况下运行。但是,包括刚性弹簧将有助于提高工作频率,并减少双缸版本的逐周期变化。使用具有平移杆动力学和缸内热力学的MATLAB / SIMULINK数值模型来预测FPLEA的总体性能和效率。该数值模型允许比较各种设计变量的不同FPLEA配置。首先,考虑了双缸FPLEA设计,在该设计中,弹簧常数发生了变化,从而改变了操作频率和转换器的运动。仿真结果表明,没有弹簧,运动就远离正弦波,并且频率和功率较低,而系统中刚性弹簧的存在强烈地决定了高频时接近正弦波的运动和高功率。还检查了其他参数(例如行程和镗孔)的影响。最后,对单缸FPLEA设计进行了相同的测试。仿真结果表明,对于相同的气缸几何形状,双缸发动机产生的电能输出是单缸发动机的两倍,效率更高。

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