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The coupling between the internal and external flows through a hybridized solar cavity receiver under isothermal conditions

机译:在等温条件下,内部和外部流过杂交的太阳能腔接收器之间的耦合

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An experimental investigation of the interaction between the internal and external flows through a simplified laboratory-scale hybrid solar cavity receiver is presented. The experiments were conducted under isothermal conditions using the Particle Image Velocimetry (PIV) technique. The device comprises a cylindrical chamber (70 mm inner diameter and 225 mm long) fitted with four jets (3.35 mm inner diameter) simulating fuel and air supply and an aperture. Four different configurations have been tested, with two different jet inclination angles (25 degrees and 50 degrees) and with two different jet azimuthal angles (0 degrees and 5 degrees). Water was used as the working fluid and the models were placed in a water channel with variable speed to allow the influence of an external flow to be simulated. The results show that the flow behaviour within the cavity is strongly dependent on the jets' configuration, the aperture ratio and tilt angle. A significant flow of external fluid was entrained through the aperture for all of configurations, with an additional 22% and 42% to the internal flow for the (alpha(j) = 25 degrees, gamma(j) = 0 degrees) case with zero and 0.24 m/s exteral velocity, respectively. The effect of opening the apreture on jet decay, turbulence intensity and recirculation pattern was also recorded. It is found that while opening the aperture and introducing an external flow have little qualitative influence on the flow pattern and jet decay, the turbulence intensity in the proximity of the aperture changes considerably. The need to manage the complex interactions between the external and internal flows through the cavity receiver is defined.
机译:介绍了通过简化的实验室级混合太阳能腔接收器的内部和外部流动之间的相互作用的实验研究。使用颗粒图像速度(PIV)技术在等温条件下进行实验。该装置包括圆柱形腔室(70mm内径和225mm长),其配备有四个喷射(3.35mm内径)模拟燃料和空气供应和孔。已经测试了四种不同的配置,具有两种不同的喷射倾斜角(25度和50度),并且具有两种不同的喷射方形角(0度和5度)。使用水作为工作流体,并且将模型放入具有可变速度的水通道中,以允许模拟外部流动的影响。结果表明,腔内的流动性能强烈地取决于喷射器的配置,孔径比和倾斜角度。通过对所有配置的孔夹带的外部流体的显着流动,额外的22%和42%,用于(alpha(j)= 25度,γ(j)= 0度)壳体的内部流量和0.24米/升的外部速度。还记录了在射流衰减,湍流强度和再循环模式上打开迁移的影响。发现在打开孔并引入外部流的虽然对流动模式和射流衰减具有很少的定性影响,但是孔径接近的湍流强度显着变化。定义了管理外部和内部流通过腔接收器之间的复杂相互作用的需要。

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