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    槽式太阳能热发电站集热场及蒸汽发生系统动态响应特性仿真研究

    Simulation study on dynamic response characteristics of the collector field and steam generation system in a parabolic-trough solar thermal power plant

    • 摘要: 槽式太阳能热发电清洁低碳、对电网友好,是一种具有广阔发展前景的新能源发电技术。针对已有研究中缺乏电站集热场和蒸汽发生系统动态响应特性分析的不足,以我国德令哈50 MW槽式太阳能热发电站为研究对象,在国产STAR-90软件平台上搭建了耦合电站集热场和蒸汽发生系统的动态仿真模型,并结合电站实际运行数据开展了模型验证,而后重点研究了直接法向辐照度(DNI)和导热油流量2个关键参数阶跃扰动下的动态响应特性。研究发现,当DNI在其设计值900 W/m2阶跃波动±50 W/m2后,集热场出口导热油温度响应时间和波动幅度分别为4 min和±5.6 ℃;蒸汽发生系统主蒸汽和再热蒸汽的响应时间均为12.5 min,温度分别波动±5.6和±4.0 ℃,而压力分别波动±0.46和±0.07 MPa。当蒸汽发生系统导热油流量在其设计值阶跃波动±10%后,主蒸汽和再热蒸汽的响应时间为8 min(阶跃升高)或9 min(阶跃降低),温度分别波动±0.4和±2.0 ℃,压力则分别波动±0.4和±0.07 MPa。

       

      Abstract: Parabolic-trough solar thermal power, characterized by its green, low-carbon, and grid-friendly attributes, is a highly promising renewable energy generation technology. However, existing research lacks in-depth analysis of the dynamic response characteristics of the heat collection field and the steam generation system in the parabolic-trough solar thermal power plant. To address this gap, this study focuses on China’s operational 50 MW parabolic-trough solar thermal power plant in Delingha. A dynamic simulation model of the plant’s collector field and steam generation system was established on the domestic STAR-90 software platform and validated against the plant’s actual operational data. Subsequently, the dynamic responses under step perturbations of two critical parameters—Direct Normal Irradiance (DNI) and heat transfer oil flow rate—were investigated. Key findings reveal that when DNI fluctuates by ±50 W/m2 around its design parameter of 900 W/m2, the outlet temperature of the heat collection field exhibits a response time of 4 minutes and fluctuates within ±5.6 ℃; the steam generation system demonstrates a response time of 12.5 minutes for both main and reheat steam, with temperatures fluctuating by ±5.6 and ±4.0 ℃, respectively, and pressures varying by ±0.46 MPa (main steam) and ±0.07 MPa (reheat steam). When the heat transfer oil flow rate of the steam generation system fluctuates by ±10% from its design value, the main and reheat steam exhibit response times of 8 minutes (for a step increase) or 9 minutes (for a step decrease), with temperature fluctuations of ±0.4 and ±2.0 ℃, respectively, and pressure variations of ±0.4 and ±0.07 MPa.

       

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