Solar Radiation Energy Issues on Nanoparticle Shapes in the Potentiality of Water Based Cu, Al2O3 and SWCNTs

R. Kandasamy, Nur Atikah bt Adnan, Mohd Kamarulzaki, M. Saifullah
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Abstract

Energy is an extensive view for industrial advancement. Solar thermal energy is designed by light and heat which is radiated by the sun, in the form of electromagnetic radiation. Solar energy is the highest promptly and sufficiently applicable authority of green energy. Impact of nanoparticle shapes on the Hiemenz nanofluid (water-based Cu, Al2O3 and SWCNTs) flow over a porous wedge surface in view of solar radiation energy has been analyzed. The three classical form of nanoparticle shapes are registered into report, i.e. sphere (m=3.0), cylinder (m=6.3698) and laminar (m=16.1576). Nanoparticles in the water-based Cu, Al2O3 and SWCNTs have been advanced as a means to boost solar collector energy through explicit absorption of the entering solar energy. The controlling partial differential equations (PDEs) are remodeled into ordinary differential equations (ODEs) by applying dependable accordance alteration and it is determined numerically by executing Runge Kutta Fehlberg method with shooting technique. It is anticipated that the lamina shape SWCNTs have dynamic heat transfer attainments in the flow improvement over a porous wedge surface as compared with the other nanoparticle shapes in different nanofluid flow regime. 
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太阳辐射能对水基Cu、Al2O3和SWCNTs纳米颗粒形状的影响
能源是工业发展的广阔视野。太阳能热能是利用太阳以电磁辐射的形式辐射出来的光和热来设计的。太阳能是绿色能源中最及时、最充分适用的权威。本文分析了纳米颗粒形状对海门兹纳米流体(水基Cu、Al2O3和SWCNTs)在多孔楔形表面上流动的影响。报告中登记了三种经典的纳米颗粒形状,即球体(m=3.0)、圆柱体(m=6.3698)和层流(m=16.1576)。水基Cu、Al2O3和SWCNTs中的纳米颗粒通过显式吸收进入的太阳能来提高太阳能集热器的能量。采用可靠依变法将控制偏微分方程转化为常微分方程,并采用射击技术进行Runge - Kutta - Fehlberg法数值求解。可以预期,与其他纳米颗粒形状的纳米流体在不同流动状态下相比,片状SWCNTs在多孔楔形表面的流动改善中具有动态传热效果。
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