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Development of a new solar thermal engine system for circulating water for aeration

机译:开发用于循环水供曝气的新型太阳能热力发动机系统

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This paper presents a numerical study about the performance of a Beta Stirling solar thermal engine system. This system is composed of a solar collector box connected to a regenerator hydraulic system and a transmitting power system. The objective of the system is to offer a new alternative to help solving stagnant water pollution in hot countries like Thailand by circulating water in canals, lakes, ponds etc. for aeration using solar energy. The purpose of this study is to determine the power output and actual heat transfer on the performance of the solar thermal engine. The solar thermal engine is analyzed using a mathematical model based on the first law of thermodynamics for processes with finite speed, with particular attention to the energy balance at the receiver. The result of calculations showed that the regenerator volume and phase angle must be chosen carefully to fulfill the requirement that total fluid mass in the system is constant and to obtain maximum power output throughout the day.
机译:本文对Beta Stirling太阳能热引擎系统的性能进行了数值研究。该系统由连接到蓄能器液压系统和发射动力系统的太阳能收集箱组成。该系统的目标是提供一种新的替代方案,通过在运河,湖泊,池塘等中循环水以利用太阳能进行曝气,帮助解决诸如泰国等炎热国家的积水问题。这项研究的目的是确定功率输出和实际传热对太阳能热机性能的影响。使用基于热力学第一定律的数学模型对太阳热机进行有限速度的过程分析,尤其要注意接收器处的能量平衡。计算结果表明,必须谨慎选择回热器的体积和相角,才能满足系统中总流体质量恒定以及全天获得最大功率输出的要求。

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