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首页> 外文期刊>Case Studies in Thermal Engineering >Nonlinear thermal radiation and activation energy significances in slip flow of bioconvection of Oldroyd-B nanofluid with Cattaneo-Christov theories
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Nonlinear thermal radiation and activation energy significances in slip flow of bioconvection of Oldroyd-B nanofluid with Cattaneo-Christov theories

机译:用Cattaneo-Christov理论,古老的玉米流体的生物卷体防滑流动的非线性热辐射和活化能力

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Recently, nanofluids are an effective source of enhancing the thermal transportation systems associated with industrial and engineering phenomena. With the nanoscale size and effective thermal properties, the nanomaterials convey exclusive beneficial applications in heat exchanges, coolant processes, medical treatment, electronic cooling systems, energy production, etc. Keeping all such motivating significances of nanoparticles in mind, this research presents the thermal aspects of Oldroyd-B nanofluid with applications of bioconvection phenomenon over a convectively heated configuration when the slip effects are more dominant. The bio-convective nanofluid model is further extended by incorporating the thermal radiation relations in nonlinear form and activation energy. The modifications in heat and mass equations are suggested in view of modified Cattaneo-Christov theories. The magnetic force and porous medium applications are also entertained. The convective conditions are imposed on accessing the flow dynamically. The numerical simulations via shooting technique by using MATLAB software are performed with convincing solution accuracy. The physical objective in view of all parameters that govern the flow model is presented in graphs and tables. The obtained theoretical results reflects applications in thermal extrusion processes, power plants, enhancing the heat/mass process, information technology, chemical processes, pharmacological processes, cooling and heating systems, solar energy production, bio-technolgy applications like enzymes, biofules etc.
机译:最近,纳米流体是增强与工业和工程现象相关的热运输系统的有效来源。随着纳米级尺寸和有效的热性能,纳米材料在热交换器中传达专属有益的应用,冷却剂工艺,医疗,电子冷却系统,能量生产等。这项研究介绍了纳米颗粒的所有这种激励意义,呈现出热方面Oldroyd-B anofly流体在双电阻现象应用时,当滑动效果更加占主导地位时,对具有定性加热配置。通过结合非线性形式和活化能量的热辐射关系进一步延伸生物对流纳米流体模型。考虑到改性的Cattaneo-Christov理论,提出了热和质量方程的修改。磁力和多孔介质应用也娱乐。对流条件是动态访问流量的。通过使用MATLAB软件通过拍摄技术的数值模拟进行了令人信服的解决方案精度。鉴于管理流程模型的所有参数的物理目标在图形和表中呈现。所获得的理论结果反映了热挤出工艺,发电厂,增强热/质量流程,信息技术,化学工艺,药理过程,冷却和加热系统,太阳能生产,生物技术应用等酶,生物素等等的应用。

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