首页> 外文会议>ES2011;International conference on energy sustainability >CONVECTIVE HEAT TRANSFER ENHANCEMENT IN SOLAR RECEIVERS USING MINIMUM ENTROPY GENERATION OPTIMIZATION
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CONVECTIVE HEAT TRANSFER ENHANCEMENT IN SOLAR RECEIVERS USING MINIMUM ENTROPY GENERATION OPTIMIZATION

机译:最小熵生成优化在太阳能接收器中对流换热的增强

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Convective heat transfer enhancement can significantly improve the thermal efficiency in the conversion, utilization, recovery and storage of energy (in particular solar thermal). Modifying velocity field is the most direct approach to enhance convective heat transfer. However, in most cases the optimal velocity field is unknown and difficult to find even for an experienced researcher. In this paper, a predictive optimization methodology in convective heat transfer enhancement based on minimum entropy generation (MEG) principle was developed. A set of Euler's equations were derived by the variation calculus to the Lagrange function established by governing equations, specific constraints and objective functional-total entropy generation rate. The solution of these equations resulted in the optimal velocity fields, leading to the minimum entropy generation. To validate and demonstrate the future application of this methodology to solar absorbers used to convert concentrated solar energy, the steady laminar convection heat transfer process in a two-dimensional channel with fixed heat flux boundaries was optimized for given total viscous dissipations. The numerical simulation results showed that lower value of maximum wall temperature was obtained by MEG optimization, which means cheaper and safer materials. The present work indicated that the new methodology could be a good guide in convective heat transfer enhancement design work, especially in CSP receivers.
机译:对流换热的增强可以显着提高能量(尤其是太阳能)的转换,利用,回收和存储中的热效率。修改速度场是增强对流传热的最直接方法。但是,在大多数情况下,最佳速度场是未知的,即使对于有经验的研究人员也很难找到。本文提出了一种基于最小熵产生(MEG)原理的对流换热增强预测优化方法。通过变分演算,将一组Euler方程推导到由控制方程,特定约束和目标函数-总熵产生率建立的Lagrange函数。这些方程的解导致了最佳速度场,从而导致了最小的熵产生。为了验证和证明该方法在转换为集中太阳能的太阳能吸收器中的未来应用,针对给定的总粘性耗散,对具有固定热通量边界的二维通道中的稳定层流对流换热过程进行了优化。数值模拟结果表明,通过MEG优化可以获得较低的最高壁温值,这意味着更便宜,更安全的材料。目前的工作表明,这种新方法可能是对流传热增强设计工作的良好指南,尤其是在CSP接收器中。

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