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光伏发电技术 储能系统 ★ 4.0

通过星形吸热器提升太阳能塔式电站的竞争力

Enhancing solar tower competitiveness with star-shaped receivers

语言:

中文摘要

摘要 星形吸热器是一种新型吸热器概念,旨在提高太阳能塔式电站的性能并降低其成本,从而增强这种可再生且可调度发电技术的竞争力。本文对星形吸热器进行了全面分析,该吸热器由于其独特的几何结构,能够实现更低的光学和热损失、更长的使用寿命以及更低的建造与维护成本。文章描述了评估星形吸热器光学与热性能、压降、蠕变-疲劳寿命、风荷载以及资本和运行成本的方法体系。具体而言,采用光线追踪模拟工具进行光学分析,同时在MATLAB中构建定制化的数值模型以研究其热力、机械及经济特性。所提出的方法可用于估算在特定场址条件下能够承受风荷载的最大吸热器尺寸,并通过基于平准化热成本(LCOH)最小化的约束性参数化流程优化该创新吸热器的设计。结果表明,在相同设计热功率下,星形吸热器的成本可比相应的Gemasolar型圆柱形吸热器低达75%。这一成本降低主要得益于采用了更少数量的管道以及比H230更廉价的材料800H。总体而言,最优电厂配置每年收集的热能约增加5%,相对于Gemasolar型圆柱吸热器案例,LCOH降低了30%。

English Abstract

Abstract Star-shaped receivers represent a novel receiver concept to increase performance and reduce cost of solar tower plants , boosting the competitiveness of these renewable and dispatchable power production technology. This article presents a comprehensive analysis of star-shaped receivers, which, due to their unique geometry, provide lower optical and thermal losses, increased lifetime, and reduced construction and maintenance costs. The article describes methodologies for assessing optical and thermal performance, pressure drop, creep-fatigue lifetime, wind load, and capital and operating costs of star receivers. Specifically, optical analysis is performed using ray-tracing simulation tools while tailored numerical models are implemented in MATLAB to investigate thermal, mechanical and economic aspects. The proposed methods allow to estimate the maximum receiver size that can withstand wind loads for a given location and optimize the design of this innovative receiver through a constrained parametric procedure based on Levelized Costs of Heat (LCOH) minimization. Results show that the cost of the star receiver can be up to 75 % cheaper than the corresponding Gemasolar-like cylindrical receiver with the same design thermal power . This cost reduction results from the adoption of fewer number of tubes and less expensive material as 800H instead of H230. Overall, the optimal plant configuration has a higher thermal energy collected by around 5 % annually, resulting in a 30 % reduction in LCOH with respect to Gemasolar-like cylindrical receiver case.
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SunView 深度解读

星型接收器通过优化几何结构降低光热损失并提升寿命,其系统级优化思路对阳光电源光储一体化方案具有启发意义。该技术实现30%的平准化热成本降低,验证了通过拓扑创新提升系统经济性的可行性。可借鉴其多物理场协同优化方法,应用于ST系列储能变流器的热管理设计,以及SG逆变器在大型光伏电站的布局优化,通过降低光学损耗、热应力和运维成本,提升光储系统全生命周期竞争力,支撑可调度可再生能源电站的LCOE优化目标。