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Numerical evaluation on the flow and heat transfer characteristics of microencapsulated phase change slurry flowing in a circular tube

机译:微封装相变浆料流动和传热特性在圆管中流动的数值评价

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摘要

In order to alleviate the peak-valley difference of the energy supply load, thermal energy storage techniques have become the promising way. Microencapsulated phase change material slurry (MPCS) is a newly-developed tool to achieve high energy storage efficiency and charge/discharge efficiency due to its large thermal energy density and good heat transfer performance. In the present work, it was numerically investigated that the flow and heat transfer characteristics of MPCS in a horizontal circular pipe under constant heat flux on the pipe wall. It was found that the higher inlet velocity, smaller piping size, higher latent heat capacity, lower fluid viscosity and larger heat flux resulted in higher heat transfer coefficient. For the case under the conditions of v(inlet) = 0.5 m/s, c(m) = 10 wt%, q = 200 kW/m(2), T-inlet = 300 K, D = 10 mm and d = 20 mu m, the local heat transfer coefficient of the heat collecting pipe reached 25.2 kW/m(2) K in the flow inlet region, remained within the range of 21.7-22.4 kW/m(2)K in the melted region and dropped to 20.15 kW/m(2)K in the outlet region. Finally, temperature field of MPCS was presented to analyze its superiority on heat transfer performance, indicating the reduction of the temperature difference between the wall and the fluid during heat transfer process was about 39% smaller than that of water.
机译:为了减轻能量供应负荷的峰值谷差,热能存储技术已成为有前途的方式。微胶囊化相变材料浆料(MPC)是一种新开发的工具,以实现由于其大的热能密度和良好的传热性能而导致的高储能效率和充电/放电效率。在本作工作中,在数控上研究了在管壁上恒定热通量下水平圆形管中MPC的流量和传热特性。发现较高的入口速度,更小的管道尺寸,更高的潜热容量,更低的流体粘度和较大的热通量导致较高的传热系数。对于v(入口)条件下的情况= 0.5m / s,c(m)= 10wt%,q = 200kw / m(2),t in入口= 300k,d = 10 mm和d = 20μm,流量入口区域中的集热管的局部传热系数达到25.2kW / m(2)k,熔化区域中的21.7-22.4kw / m(2)k的范围内并掉落出口区域中的20.15 kW / m(2)k。最后,提出了MPCS的温度场,以分析其对传热性能的优越性,表明在传热过程中壁和流体之间的温差降低约为39%,比水小约39%。

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