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A study of 3-D numerical simulation and comparison with experimental results on turbulent flow of venting flue gas using thermoelectric generator modules and plate fin heat sink

机译:利用热电发电机模块和板翅式散热器对烟气湍流进行三维数值模拟的研究及与实验结果的比较

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摘要

This paper investigates the three-dimensional turbulent flow in a chimney used for venting flue gas from either a boiler or stove. The thermoelectric generator (TEG) modules are embedded in the chimney walls. To understand the power output performance of the TEG module, three-dimensional numerical simulations combining convection and radiation effects, including the chimney tunnel, TEG modules, plate-fin heat sinks and cold plates, based on water cooling are developed and solved simultaneously. The effects of operational parameters such as the flue gas velocity (V_(in) = 3. 5 and 10 m/s) and flue gas temperatures (T_(gas) = 500, 600 and 700 K) on the flow and heat transfer are determined. The influences of the plate-fin height (H_(fin)) and number of fins (N), ranging from 0 mm < H_(fin) < 100 mm and 4 < N < 8 respectively, on the power output and pressure drop are also described in detail. It is worthy of note that the net electric power (P_(net)) of the TEG module was obtained using the ideal electric power (P_(TEG)) minus the extra pumping power (P_(fan)). The numerical results for the power vs. current (P-I) curve are in good agreement with the experimental data within an error of 9%.
机译:本文研究了烟囱中的三维湍流,该烟囱用于排出锅炉或火炉的烟气。热电发电机(TEG)模块嵌入在烟囱壁中。为了了解TEG模块的功率输出性能,同时开发并求解了基于对流和辐射效应的三维数值模拟,其中包括烟囱式隧道,TEG模块,板翅式散热器和冷板,它们是基于水冷却的。烟气速度(V_(in)= 3. 5和10 m / s)和烟气温度(T_(gas)= 500、600和700 K)等运行参数对流量和传热的影响是决心。板翅片高度(H_(fin))和翅片数(N)分别对功率输出和压降的影响范围分别为0 mm

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