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Investigations of thermo-hydrodynamics, structural stability, and thermal energy storage for direct steam generation in parabolic trough solar collector: A comprehensive review

机译:用于抛物面槽太阳能收集器直接蒸汽发电的热流体动力学,结构稳定性和热能储存的研究:全面审查

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摘要

The first generation of the parabolic trough collector (PTC) solar power plants uses synthetic oil as a heat transfer fluid (HTF) in the solar field. Direct steam generation (DSG) in the solar field is the next generation advancement by replacing oil with water-steam. The DSG improves the power generation's cost-effectiveness in terms of higher thermal efficiency, lower overall cost, and excellent scale-up potential. This technology experienced significant development in the last two decades. In this article, an extensive review of DSG technology development and challenges in commercialization is presented. The experimental and numerical investigations performed to size and design both the solar field and its control system to maintain the desired operating characteristics are discussed. The design of solar field components for high-temperature applications and effective process control systems for two-phase flow operations are the current challenges that need to be addressed. The benefits and limitations of various methods of steam generation and different DSG processes are discussed. The thermal instability in the DSG solar field due to the presence of two-phase flow in the solar collectors must be resolved to commercialize this technology. The demonstration of the thermal energy storage (TES) system has indicated that the unavailability of a cost-effective TES system with adequate storage capacity is likely to disappear in the future, which will improve the grid integration and dispatchability of DSG solar power plants.
机译:第一代抛物线槽收集器(PTC)太阳能发电厂使用合成油作为太阳能场中的传热液(HTF)。太阳能场中的直接蒸汽发电(DSG)是用水蒸气替换油的下一代进步。 DSG在更高的热效率,整体成本和优异的放大潜力方面提高了发电的成本效益。这项技术在过去二十年中经历了显着的发展。在本文中,提出了对DSG技术的广泛审查,在商业化中的挑战。讨论了对尺寸和设计进行太阳能场及其控制系统来维持所需的操作特性的实验和数值研究。用于高温应用和用于两相流动操作的有效过程控制系统的太阳能场部件的设计是当前需要解决的挑战。讨论了各种蒸汽发生和不同DSG过程方法的益处和限制。必须解析由于太阳能收集器中两相流的存在而导致的DSG太阳能场中的热不稳定性以将该技术商业化。热能存储(TES)系统的演示表明,具有足够储存能力的经济高效的TES系统的不可用可能在将来消失,这将提高DSG太阳能发电厂的电网集成和调度性。

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