首页> 外文会议>DSCC2011;ASME dynamic systems and control conference;Bath/ASME symposium on fluid power and motion control >OPTIMAL EFFICIENCY-POWER TRADEOFF FOR AN AIR MOTOR/COMPRESSOR WITH VOLUME VARYING HEAT TRANSFER CAPABILITY
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OPTIMAL EFFICIENCY-POWER TRADEOFF FOR AN AIR MOTOR/COMPRESSOR WITH VOLUME VARYING HEAT TRANSFER CAPABILITY

机译:容量可变传热能力的空气马达/压缩机的最佳效率-功率平衡

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This paper presents the pressure-volume trajectories that yield the optimal tradeoff between efficiency and power during the compression and expansion of air. These results could ben efit applications such as compressed air energy storage where both high efficiency and power density are required. Earlier work established solutions for the simple case in which hA, the product of the heat transfer coefficient and heat transfer surface area, is constant. This paper extends that analysis by allowing hA to vary with air volume. Solutions to the constrained, non linear optimization problem are developed utilizing the method of Lagrange multipliers and Karush-Kuhn-Tucker (KKT) condi tions. It is found that the optimal trajectory takes the form "fast-slow-fast" where the fast stages are adiabatic and the temperature change during the slow stage is proportional to the inverse root of the hA product. A case study predicts a 60% improvement in power over the constant-hA solution when both trajectories are run at 90% efficiency and hA = hA (V). Compared to linear and sinusoidal-shaped trajectories, also at 90% efficiency, power gains are expected to be in the range of 500-1500%.
机译:本文介绍了在空气压缩和膨胀过程中产生效率与功率之间最佳平衡的压力-体积轨迹。这些结果可能是有益的应用,例如同时需要高效率和功率密度的压缩空气储能。早期的工作为传热系数与传热表面积之积hA为常数的简单情况建立了解决方案。本文通过允许hA随空气量变化而扩展了该分析。利用拉格朗日乘数和Karush-Kuhn-Tucker(KKT)条件的方法,开发了受约束的非线性优化问题的解决方案。发现最佳轨迹采取“快-慢-快”的形式,其中快阶段是绝热的,慢阶段的温度变化与hA乘积的倒数根成正比。案例研究预测,当两个轨迹均以90%的效率运行并且hA = hA(V)时,功率比恒定hA解决方案提高60%。与线性和正弦形轨迹相比,同样在90%的效率下,功率增益预计将在500-1500%的范围内。

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