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Enhancing convective heat transfer for laminar flow in a tube by inserting a concentric inner tube and controlling concurrent flows: a numerical assessment

机译:通过插入同心内管并控制并发流来增强管内层流的对流传热:数值评估

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The present study demonstrates, via a numerical simulation, the feasibility of achieving enhanced forced convection heat transfer of laminar water flow in an isoflux heated circular tube by inserting a concentric circular tube and controlling the concurrent flow distribution through the resulting concentric double-tube duct. Under identical operation conditions to those for the parent single-tube flow configuration, including the inlet fluid temperature, the total volumetric flow rate, the length of heated section, as well as the wall heat flux imposed, numerical simulations have been undertaken for the thermally developing convective heat transfer characteristics of water flow in the concentric double-tube duct featuring geometrically by three different relative radius ratio r(o) (= 1.2, 1.5, 1.8), compared with its parent single-tube duct of l(h,ST) = 0.1 at Re-ST = 100, 500, and 1000, respectively. In terms of the local and length-averaged heat transfer effectiveness gauged against that obtained for the parent single-tube duct, numerical results clearly demonstrate that the double-tube duct of smaller r(o) operating with relative larger flow rate than that in the inner tube can serve as highly effective heat transfer enhancement configuration.
机译:本研究通过数值模拟证明了通过插入同心圆管并控制通过形成的同心双管管道的并发流量分布来提高等流量加热圆管中层流水的强制对流换热的可行性。在与父级单管流动配置相同的运行条件下,包括入口流体温度,总体积流量,加热段的长度以及施加的壁热通量,对热力进行了数值模拟与它的父级单管风道l(h,ST)相比,在同心双管风道中水流的对流传热特性在几何上具有三个不同的相对半径比r(o)(= 1.2、1.5、1.8) )= 0.1,分别对应于Re-ST = 100、500和1000。根据相对于父级单管风道获得的局部传热效率和长度平均传热效率,数值结果清楚地表明,较小r(o)的双管风道相对于单管风道的流速较大。内管可以用作高效的传热增强配置。

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