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Effects of external perturbations on dynamic performance of carbon dioxide transcritical power cycles for truck engine waste heat recovery

机译:外部扰动对卡车发动机废热回收二氧化碳跨临界功率循环动力性能的影响

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Carbon dioxide transcritical power cycle (CTPC) systems are dynamically tested on a constructed test bench using an expansion valve. Effects of external perturbations of pump speed, expansion valve opening and engine conditions on dynamic performance of the CTPC systems are investigated with step changes. Dynamic characteristics are identified with rise time, settling time and overshoot. Results show that both a basic CTPC system and a CTPC system with a recuperator (R-CTPC) behave as a second-order underdamped system with the perturbations of pump speed and expansion valve opening. Overshoot or undershoot tends to appear in pressures when pump speed changes, while overshoot or undershoot occurs more noticeably in temperatures when expansion valve opening varies. Although the CTPC systems respond slowly with the perturbations of engine conditions, they have the ability to operate safely and produce power continuously. Therefore, the CTPC systems are robust when facing narrow fluctuations of heat sources while swift when required to make adjustments, showing great potential for truck engine waste heat recovery. Overall, current research gives a full understanding of the dynamic performance of the CTPC systems, which will provide references for dynamic model validation and possible control strategy identification. (C) 2018 Elsevier Ltd. All rights reserved.
机译:使用膨胀阀在建造的试验台上对二氧化碳跨临界功率循环(CTPC)系统进行动态测试。通过逐步改变,研究了外部干扰对泵速,膨胀阀开度和发动机状况的影响对CTPC系统动态性能的影响。动态特性由上升时间,建立时间和过冲确定。结果表明,基本的CTPC系统和带有换热器的CTPC系统(R-CTPC)都表现为具有泵速和膨胀阀开度扰动的二阶欠阻尼系统。当泵速变化时,压力会出现过冲或下冲,而当膨胀阀开度变化时,在温度下过冲或下冲更明显。尽管CTPC系统对发动机状况的扰动反应缓慢,但它们具有安全运行和连续发电的能力。因此,CTPC系统在面对狭窄的热源波动时非常坚固,而在需要进行调整时则迅速运行,显示出卡车发动机余热回收的巨大潜力。总的来说,当前的研究充分了解了CTPC系统的动态性能,这将为动态模型验证和可能的控制策略识别提供参考。 (C)2018 Elsevier Ltd.保留所有权利。

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