首页> 外文会议>ASME international conference on energy sustainability;ES2009 >IMPACT OF SIZE AND SCATTERING MODE ON THE OPTIMAL SOLAR ABSORBING NANOFLUID
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IMPACT OF SIZE AND SCATTERING MODE ON THE OPTIMAL SOLAR ABSORBING NANOFLUID

机译:尺寸和散射方式对最优太阳能吸收纳米流体的影响

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The concept of using a direct absorbing nanofluid, a liquid-nanoparticle suspension, has recently been shown numerically and experimentally to be an efficient method for harvesting solar thermal energy. Studies show that the size and shape of the nanoparticles as well as the scattering mode (e.g. dependent, independent, and multiple) all impact the amount of energy absorbed and emitted by the nanofluid. In order to optimize the efficiency of a direct absorption solar thermal system the optimum nanoparticle-liquid combination needs to be developed. The optimum nanofluid for a direct absorption solar thermal collector is investigated numerically through the variation of particle size, including the impact of size on optical properties, and scattering mode. The study addresses both the absorption of solar energy within the fluid as well as the emission of the fluid.
机译:最近,在数字上和实验上已经证明了使用直接吸收的纳米流体,液体-纳米颗粒悬浮液的概念是一种收集太阳能热的有效方法。研究表明,纳米颗粒的尺寸和形状以及散射模式(例如,依赖性,独立和多重)均影响纳米流体吸收和发射的能量。为了优化直接吸收太阳能热系统的效率,需要开发最佳的纳米颗粒-液体组合。通过改变粒径(包括粒径对光学性能和散射模式的影响),对用于直接吸收式太阳能集热器的最佳纳米流体进行了数值研究。该研究涉及流体中太阳能的吸收以及流体的排放。

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