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Generalized distributed state space model of a CSP plant for simulation and control applications: Single-phase flow validation

机译:CSP工厂的广义分布式状态空间模型进行仿真和控制应用:单相流程验证

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摘要

Concentrating solar thermal power plants, also known as CSP plants, can be of different configurations depending on type of collectors, temperatures, heat transfer fluid, working fluid, and the thermodynamic cycle used in the plant. This leads to complex behavior with nonlinear dynamics, potential instability and parameters that vary in both space and time. In this work, a distributed state space model is proposed to ensure computational flexibility and facilitate industrial applications, such as optimization, control and automation. The format used allows the model to represent the thermal dynamics at different operation points including phase changes (liquid or gas) along the spatial dimension. To validate the model, some experimental tests have been made on an operating solar thermal plant located at the University of South Florida, in United States, where real input disturbances were applied to compare measurements with model predictions. Preliminary results show good agreement with experimental observations. Literature data of water and steam properties were used in the model, that can be easily extended to direct steam generation (DSG) plants. (C) 2020 Elsevier Ltd. All rights reserved.
机译:集中太阳能发电厂,也称为CSP植物,可以是不同的配置,这取决于收集器,温度,传热流体,工作流体和植物中使用的热力学循环的不同配置。这导致具有非线性动态的复杂行为,在空间和时间内各不变化的潜在不稳定性和参数。在这项工作中,提出了一种分布式状态空间模型,以确保计算灵活性,并促进工业应用,例如优化,控制和自动化。所用的格式允许模型表示不同操作点处的热动力学,包括沿空间尺寸的相变(液体或气体)。为了验证该模型,已经在位于美国南佛罗里达大学的运行太阳能热厂进行了一些实验测试,其中应用了实际输入干扰来比较模型预测的测量。初步结果显示了与实验观察的良好一致性。在模型中使用了水和蒸汽性能的文献数据,可以很容易地扩展到直接蒸汽发电(DSG)植物。 (c)2020 elestvier有限公司保留所有权利。

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