首页> 外文会议>ASME International Conference on Energy Sustainability >HEAT FLUX DISTRIBUTION OVER A SOLAR CENTRAL RECEIVER USING AN AIMING STRATEGY BASED ON A CONVENTIONAL CLOSED CONTROL LOOP
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HEAT FLUX DISTRIBUTION OVER A SOLAR CENTRAL RECEIVER USING AN AIMING STRATEGY BASED ON A CONVENTIONAL CLOSED CONTROL LOOP

机译:使用基于传统的闭合控制回路的瞄准策略,在太阳中央接收器上发热通量分布

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Solar thermal towers are a maturing technology that have the potential to supply a significant part of energy requirements of the future. One of the issues that needs careful attention is the heat flux distribution over the central receiver's surface. It is imperative to maintain receiver's thermal stresses below the material limits. Therefore, an adequate aiming strategy for each mirror is crucial. Due to the large number of mirrors present in a solar field, most aiming strategies work using a data base that establishes an aiming point for each mirror depending on the relative position of the sun and heat flux models. This paper proposes a multiple-input multiple-output (MIMO) closed control loop based on a methodology that allows using conventional control strategies such as those based on Proportional Integral Derivative (PID) controllers. Results indicate that even this basic control loop can successfully distribute heat flux on the solar receiver.
机译:太阳能热塔是一种成熟的技术,有可能提供未来能源需求的重要组成部分。需要仔细注意的问题之一是中央接收器表面的热量通量分布。必须维持接收器的热应力低于材料限制。因此,每个镜子的适当瞄准策略至关重要。由于太阳能场中存在的大量反射镜,大多数旨在的策略使用数据库,该数据库根据太阳和热通量模型的相对位置来确定每个镜子的瞄准点。本文提出了一种基于方法的多输入多输出(MIMO)闭合控制回路,该方法允许使用传统控制策略,例如基于比例积分衍生物(PID)控制器的方法。结果表明,即使是这种基本控制回路也可以在太阳能接收器上成功分配热量。

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