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Steam Drum Design for Direct Steam Generation

机译:直接产生蒸汽的汽包设计

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摘要

For the direct steam generation in solar fields, the recirculation concept has been demonstrated in several\udinstallations. Water masses in the solar field vary during transient phases, such as passing clouds. The volume of the\udsteam drum can serve as a buffer during such transients by taking in excess water and providing water storage. The\udsaturated steam mass flow to the superheating section or the consumer can be maintained almost constant during short\udtransients; therefore the steam drum plays a key role for constant steam supply. Its buffer effect depends on the right\udsizing of the steam drum for the prevailing situations. Due to missing experiences, steam drums have been sized under\udconservative assumptions and are thereby usually oversized. With this paper, experiences on the steam drum of the 5\udMWel TSE1 power plant are discussed for optimized future plant design. The results are also of relevance for process\udheat installations, in which saturated steam is produced by the solar field.
机译:对于太阳能领域中的直接蒸汽产生,已经在几台设备中证明了再循环概念。太阳场中的水团在过渡阶段(例如,穿过云层)会发生变化。蒸汽鼓的体积可以在这种瞬态期间通过吸收过量的水并提供水存储来作为缓冲。在短暂的瞬变过程中,流向过热区或用户的过饱和蒸汽质量几乎可以保持恒定。因此,蒸汽鼓对于恒定的蒸汽供应起着关键作用。在当前情况下,它的缓冲效果取决于蒸汽鼓的正确安装。由于缺少经验,蒸汽鼓的尺寸在保守的假设之下,因此通常尺寸过大。本文讨论了5 \ udMWel TSE1电厂蒸汽鼓的经验,以优化未来的电厂设计。结果也与过程/过热装置相关,在该装置中,太阳能场产生饱和蒸汽。

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