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An indoor experimental investigation of the thermal performance of a TPLT-based natural circulation steam generator as applied to PTC systems

机译:基于PTC的TPLT型自然循环蒸汽发生器热性能的室内实验研究

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摘要

An indoor experimental setup of a two-phase loop thermosyphon (TPLT)-based natural circulation steam generator, as applied to parabolic trough solar collector for medium temperature steam generation was proposed. Thermal performance of the TPLT steam generation system, especially the receiver, was investigated experimentally. Relatively low two-phase heat transfer coefficients, 263.03 and 265.03 W/m~2 K for two selected steam discharging pressures, were obtained in the receiver for such horizontally-arranged TPLT system. Two types of flow instability, i.e., backflow and bi-directional flow, were observed in the TPLT system. The effects of flow instability on thermal performance of the TPLT steam generation system were analyzed. The results showed that isothermality of the system could be improved due to the presence of both unstable flow conditions. The improved isothermality, however, finally resulted in a lower thermal efficiency. At the steam discharging pressure of 0.15 MPa, heat transfer coefficient was increased by 20.07% and was decreased by 0.40% for the bi-directional flow and backflow patterns, respectively.
机译:提出了一种基于室内两相回路热虹吸管(TPLT)的自然循环蒸汽发生器的室内实验装置,该装置用于抛物槽式太阳能集热器中温蒸汽的产生。通过实验研究了TPLT蒸汽发生系统(特别是接收器)的热性能。对于这种水平布置的TPLT系统,在接收器中获得了相对低的两相传热系数263.03和265.03 W / m〜2 K,这在两个选定的蒸汽排放压力下得以实现。在TPLT系统中观察到两种类型的流动不稳定性,即回流和双向流动。分析了流动不稳定性对TPLT蒸汽发生系统热性能的影响。结果表明,由于两种不稳定流动条件的存在,可以改善系统的等温性。然而,改善的等温性最终导致较低的热效率。在0.15 MPa的蒸汽排放压力下,双向流动和回流模式的传热系数分别增加20.07%和减少0.40%。

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