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Experimental Evaluation of Evaporator Thermal Inertia for an Optimal Control Strategy of an Organic Rankine Cycle Waste Heat Recovery System

机译:蒸发器热惯性对有机朗肯循环废热回收系统的最优控制策略的实验评价

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摘要

Organic Rankine cycle (ORC) is considered to be a promising waste heat recovery (WHR) technique. In this article, the thermal inertia of an evaporator for an ORC system is evaluated. While the literature is rich in understanding open loop evaporator response, closed loop dynamic response with the controller is lacking. To understand the dynamic response of the evaporator, sinusoidal heat inputs with varying frequency are considered. A nonlinear model predictive control (NMPC) strategy is evaluated for a single evaporator experiencing this sinusoidal heat signal in both simulation and experimental cases. Experimental verification showed that the evaporator was most responsive to low-frequency sinusoidal heat signals. In such case, penalizing the control input helped in retaining the superheat tracking performance of the proposed NMPC. Further, while many studies have explored model predictive control (MPC) as a possible control strategy for an ORC-WHR system, none has exploited MPC's preview capability. In this study, the MPC's preview feature is utilized to investigate any potential benefits of knowing the future exhaust conditions. Simulations showed that utilizing knowledge of future exhaust conditions within the MPC preview is beneficial in minimizing control input variation and in minimizing superheat tracking errors for certain heat input frequency ranges.
机译:有机朗肯循环(ORC)被认为是有希望的废热回收(WHR)技术。在本文中,评估蒸发器的蒸发器的热惯性。虽然文献富有了解开环蒸发器响应,但缺少了与控制器的闭环动态响应。为了理解蒸发器的动态响应,考虑具有不同频率的正弦热输入。在模拟和实验情况下,对经历这种正弦热信号的单个蒸发器评估非线性模型预测控制(NMPC)策略。实验验证表明,蒸发器对低频正弦热信号最敏感。在这种情况下,惩罚控制输入有助于保留所提出的NMPC的过热跟踪性能。此外,虽然许多研究已经探索了模型预测控制(MPC)作为ORC-WHR系统的可能的控制策略,但是没有利用MPC的预览能力。在这项研究中,MPC的预览特征用于调查知道未来的排气条件的任何潜在益处。模拟表明,利用MPC预览内的未来废气状况的知识在最小化控制输入变化以及最小化某些热输入频率范围内的超热跟踪误差是有益的。

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