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Two-step optimization procedure for the conceptual design of A-frame systems for solar power plants

机译:太阳能发电厂A型机架系统概念设计的两步优化程序

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This work presents a two-stage optimization procedure for the conceptual design and operation of A-frame dry cooling systems for concentrated solar power facilities. First, the optimal geometry of the A-frame including sizing, number of fans and blade geometry, and unit parameters such as pipe length, configuration and number is determined. Finally, the operation of the system over a year for minimum energy consumption is computed. The geometry problem is formulated as a mixed-integer non linear programming (MINLP) problem. A tailor-made branch and bound algorithm is used to solve the complex non-linear programming sub-problems. The second problem consists of a multi-period MINLP. A fixed geometry is used to evaluate the usage of fans over time. The solution suggests an apex angle of 63°, one row of 75 pipes of 13.5 mlong with a diameter of 3.3 mm, and 4 fans are used but they only operate at full capacity during summer. This design allows reducing the energy required by 20% by using the appropriate pipe configuration and number. The unit consumes around 4% of the energy produced by the CSP plant that serves. It is a promising result that can be affected by plant layout and ground availability.
机译:这项工作为集中式太阳能发电设施的A型干式冷却系统的概念设计和运行提出了一个两阶段的优化程序。首先,确定A形框架的最佳几何形状,包括尺寸,风扇数量和叶片几何形状,以及诸如管道长度,配置和数量之类的单元参数。最后,计算系统在一年内的最低能耗。几何问题被公式化为混合整数非线性规划(MINLP)问题。使用量身定制的分支定界算法来解决复杂的非线性编程子问题。第二个问题包括一个多时期的MINLP。固定的几何形状用于评估随时间推移的风扇使用情况。该解决方案建议将顶角设为63°,排成75根13.5毫米长,直径3.3毫米的管道,并使用4个风扇,但它们仅在夏季满负荷运转。通过使用适当的管道配置和数量,该设计可将所需能量减少20%。该装置消耗的能量大约是所服务的CSP工厂产生的能量的4%。这是一个有希望的结果,可能会受到工厂布局和地面可用性的影响。

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