首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >HEAT TRANSFER PERFORMANCE OF A DUAL-CHAMBER FINNED SOLAR ABSORBER FOR CONCENTRATING SOLAR EVAPORATOR APPLICATIONS
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HEAT TRANSFER PERFORMANCE OF A DUAL-CHAMBER FINNED SOLAR ABSORBER FOR CONCENTRATING SOLAR EVAPORATOR APPLICATIONS

机译:用于浓缩太阳蒸发器应用的双腔翅片太阳能吸收器的传热性能

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This paper explores the performance advantages of a novel design of an evaporator-superheater for Rankine solar applications. The solar absorber device consists of a dual-chamber design in which the outer chamber contains fins for enhanced heat transfer allowing for multi-pass working fluid to accomplish both single phase and multiphase heat transfer in a simple low-cost manner. Analytical models to predict heat transfer performance and frictional losses in this design are described. Nondimensional analysis compares multiple strip-fin configurations for the outer chamber to establish optimal constructions. Predicted performance of the dual-chamber design is compared to traditional single chamber solar absorber tube for a 10 kW case study. The design analysis indicates that the concentric dual-chamber design minimizes heat loss to the surroundings providing a high level of evaporator performance.
机译:本文探讨了蒸发器 - 超热器的新颖设计的性能优势,用于朗肯太阳能应用。太阳能吸收器装置由双腔设计组成,其中外腔包括用于增强的传热翅片,允许多遍工作流体以简单的低成本方式实现单相和多相热传递。描述了预测该设计中传热性能和摩擦损失的分析模型。 Nondimensional分析比较了外腔的多条带翅片配置,以建立最佳结构。预测双室设计的性能与传统的单室太阳能吸收管相比,用于10 kW案例研究。设计分析表明同心双室设计最小化了对周围环境的热量损失,提供高水平的蒸发器性能。

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