首页> 外文期刊>Journal of solar energy engineering >Numerical Simulation Coupled With MCRT Method to Study the Effect of Plug Diameter and Its Position on Outlet Temperature and the Efficiency of LS-2 Parabolic Trough Collector
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Numerical Simulation Coupled With MCRT Method to Study the Effect of Plug Diameter and Its Position on Outlet Temperature and the Efficiency of LS-2 Parabolic Trough Collector

机译:数值模拟结合MCRT方法研究插塞直径及其位置对出口温度的影响以及LS-2抛物槽收集器的效率

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Based on finite volume method, three-dimensional models are used to evaluate the effect of flow restriction device (plug) on outlet temperature and efficiency of LS-2 parabolic trough collector. In order to study the effect of plug, various positions of plug with different diameters are used as case-studies. In other hand, solar heat flux distribution on the outer wall of the receiver tube is calculated by Monte Carlo ray tracing method (MCRT). The MCRT method is applied and coupled with three-dimensional numerical methods, computational fluid dynamics (CFD), in order to study the effect of plug diameters and their positions on outlet temperature and efficiency of collector. The result of MCRT method shows nonuniform heat flux hits on outer wall of receiver tube. So, after simulation of absorber tube of LS-2 PTC, the nonuniform heat flux is applied in the computational code. In order to validate the numerical methods, the working fluid and physical simulated model and operating conditions are considered as Syltherm-800 and LS-2 parabolic trough collector which had been tested via Dudley et al. at Sandia National Research Laboratory (SNRL). After the validation of numerical method, several case-studies with variable plug diameter and plug positions are simulated. Other working fluids are also tested for modeling of mentioned case-studies too. Results show that if the amount of nondimensional displacement from center becomes +0.5, then outlet temperature will be gentler. It is independent of plug diameter and working fluid. Finally, the efficiency of each of cases is evaluated. Consider that, the evacuated receiver tube is utilized in simulation of parabolic trough concentrator (PTC) and therefore, the convective losses have been negligible.
机译:基于有限体积法,使用三维模型评估限流装置(塞子)对LS-2抛物槽收集器出口温度和效率的影响。为了研究塞子的作用,以不同直径的塞子的不同位置作为案例研究。另一方面,通过蒙特卡洛射线追踪法(MCRT)计算接收管外壁上的太阳热通量分布。应用MCRT方法并将其与三维数值方法(计算流体动力学(CFD))相结合,以研究塞子直径及其位置对出口温度和集热器效率的影响。 MCRT方法的结果表明,接收管外壁的热通量不均匀。因此,在对LS-2 PTC吸收器管进行仿真之后,将不均匀的热通量应用到了计算代码中。为了验证数值方法,工作流体和物理模拟模型以及运行条件被认为是Syltherm-800和LS-2抛物槽收集器,它们已经通过Dudley等人进行了测试。在桑迪亚国家研究实验室(SNRL)。在数值方法验证之后,模拟了几个具有可变塞子直径和塞子位置的案例研究。还对其他工作流体进行了测试,以对上述案例研究进行建模。结果表明,如果距中心的无量纲位移量变为+0.5,则出口温度将变平缓。它与塞子直径和工作流体无关。最后,评估每种情况的效率。考虑到,在模拟抛物线槽浓缩器(PTC)中使用了真空接收管,因此对流损失可以忽略不计。

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