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Experimental investigations on heat transfer enhancement in shell coil heat exchanger with variable baffles geometry

机译:具有可变挡板几何的壳体线圈热交换器热传递增强的实验研究

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摘要

The paper presents the possibility of using passive intensification of heat transfer in the form of baffles to increase the energy efficiency of the shell and coil heat exchanger. The experiment was carried out by using a modular coil heat exchanger in the form of an electric heater. Water was used as a working fluid with constant thermal-flow parameters at the inlet of the module. It should be noted that experiments were made for a large range of power i.e. from 200 W to 1200 W and with mass flow rates from 0.01 kg(-1) to 0.03 kg(-1). For this flow range, Reynolds numbers were obtained in the field 150 Re 450. Consequently, all experiments were carried out for laminar flow conditions. This work shows, that due to the presence of mixed convection, natural convection has a significant effect on small values of Reynolds numbers and large values of Richard' number. Also, the baffles location has a significant influence on HX performance. The proposed solution of the shell coil exchanger with a baffle is characterized by better heat transfer efficiency on the shell side, but rather for lower values of Reynolds (Re 150) numbers and high values of heat fluxes. For all configurations is noticeable the influence of the supplied heat flux value on the rate of heat transfer. The paper presents new experimental Nusselt numbers correlation on the shell side of the heat exchanger with core-baffles. This correlation depends on Grashoff and Dean numbers as well as dimensionless shell diameter (C/D-0), the correlation also includes Prandtl number. Experimental data were compared with selected correlations from literature as well as with own correlation. It was shown that only own semi-empirical correlation has satisfactory compliance with experimental results within 35% error band and with less than 8% of absolute deviation. The considered construction has markedly better heat transfer efficiency on the shell side for small Reynolds numbers (Re 150) comparing to the tube-in-tube exchanger with wire coil turbulator(over 20%).
机译:本文呈现了使用挡板形式的热传递的被动强化,以提高壳体和线圈热交换器的能效。通过使用电加热器形式的模块化线圈热交换器进行实验。用作模块入口处的恒定热流量参数用作工作流体。应当注意,将实验用于大量的功率I.。从200W至1200W,质量流速从0.01kg(-1)至0.03kg(-1)。对于该流量范围,在字段150中获得雷诺数。重新&因此,因此对层流动条件进行了所有实验。这项工作表明,由于存在混合对流,自然对流对雷诺数的小值和理查德数量的大值具有显着影响。此外,挡板位置对HX性能产生了重大影响。具有挡板的壳体线圈交换器的所提出的溶液,其特征在于壳侧的较好的传热效率,而是用于雷诺(RE <150)的较低值和热量的高值。对于所有配置,显着的热通量值对传热速率的影响是显而易见的。本文呈现了芯挡板的热交换器壳侧的新实验营养数量相关性。这种相关性取决于GRASHOFF和DEAN数字以及无量纲壳直径(C / D-0),相关性也包括PRANDTL编号。将实验数据与来自文献的选定相关性以及自身相关进行了比较。结果表明,只有自己的半经验相关性令人满意的符合实验结果,在35%的错误频段内,绝对偏差的8%不到8%。考虑的结构在与带有线圈湍流器(超过20%超过20%)的管内交换器比较的小雷诺数(RE <150)的壳侧上明显了更好的传热效率。

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