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Real-Time Emulation of a Pressure-Retarded Osmotic Power Generation System

机译:压力滞后渗透发电系统的实时仿真

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摘要

Power production by conversion of salt gradient energy (osmotic power production) has the potential for global commercialization. Research on the net-power output and osmotic power plant configurations could result in viable methods for improvement of plant efficiency. In this paper, a novel equivalent electric-circuit model of the pressure-retarded osmosis (PRO) process is described and is used to develop a power-hardware-in-the-loop (PHIL) emulator to represent the osmotic power plant. The model considers many dynamics involved with PRO including reverse salt leakage, concentration polarization, and the salt storage capacity of water. The proposed model facilitates real-time dynamic simulation and analysis of the PRO power plant, and its interaction with the rest of the PRO power system, namely the impulse turbine and the synchronous generator supplying power to off-grid or isolated loads. The response of the multidomain system including hydraulic, mechanical, and electrical components of the system is observed, given changes in the input parameters such as source flow rate. The proposed PHIL emulator provides insight into the operational dynamics and behavior of the PRO system. The proposed real-time emulator serves as a powerful tool that can advance research and development of PRO power generation systems. Simulation and experimental results are presented in this paper to validate the PRO plant model and the operation of the proposed real-time PHIL PRO emulator.
机译:通过盐梯度能量转换产生的发电量(渗透发电量)具有全球商业化的潜力。对净功率输出和渗透电厂配置的研究可以为提高电厂效率提供可行的方法。在本文中,描述了一种新型的等压延迟渗透(PRO)过程的等效电路模型,并将其用于开发可表示渗透电厂的功率硬件在环(PHIL)仿真器。该模型考虑了PRO涉及的许多动力学,包括反向盐泄漏,浓度极化和水的盐存储能力。所提出的模型有助于PRO电厂的实时动态仿真和分析,以及它与PRO电力系统的其余部分(即脉冲涡轮机和同步发电机向离网或隔离负荷供电)的交互作用。给定输入参数(例如源流量)的变化,可以观察到多域系统的响应,包括系统的液压,机械和电气组件。所建议的PHIL仿真器可深入了解PRO系统的运行动态和行为。所提出的实时仿真器是一种强大的工具,可以促进PRO发电系统的研发。本文给出了仿真和实验结果,以验证PRO工厂模型以及所提出的实时PHIL PRO仿真器的运行。

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