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Study of the effects of axial conduction on the performance of thermoelectric generators integrated in a heat exchanger for waste heat recovery applications

机译:研究轴向传导对集成在废热回收应用热交换器中的热电发电机性能的影响

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摘要

The electrical power generated from thermoelectric generators (TEGs) integrated in a heat exchanger is maximized by applying novel heat exchanger design criteria for waste heat recovery systems. A numerical model is developed and experimentally validated to simulate the performance of TEG-integrated heat exchangers. The performance of a heat recovery system, suitable for low temperature commercial applications similar to 300 degrees C, is investigated for a range of heat exchanger sizes of 2 to 8 TEG rows and exhaust gas mass flow rates of 0.02 to 0.08 kg/s. The adverse effect of the heat conducted axially, along the flow direction, on the total power output of the TEGs is quantified. The number of rows reaches an optimum value for a given gas flow rate beyond which a significant drop in the hot-side temperature of the upstream TEG rows occurs due to the increase of the axial conduction between successive rows. The term "Power Gain" is introduced in this study as the ratio between the power output from a system without axial conduction to that with axial conduction. Power Gain shows the potential benefits of limiting the axial conduction through the heat exchanger and values up to 1.2 times (20% increase in power) can be obtained for relatively low exhaust gas flow rates (similar to 0.02 kg/s). Novel performance maps are developed to correlate the power output with the heat exchanger design, exhaust gas flow rate and number of TEGs. Such maps can be used to guide the optimization of the design of TEG-integrated waste heat recovery systems.
机译:通过为废热回收系统应用新颖的换热器设计标准,可以将集成在换热器中的热电发生器(TEG)产生的电力最大化。建立了数值模型并进行了实验验证,以模拟集成TEG的热交换器的性能。针对2至8 TEG行的换热器尺寸和0.02至0.08 kg / s的排气质量流量,研究了适用于类似于300摄氏度的低温商业应用的热回收系统的性能。量化了沿流动方向轴向传导的热量对TEG的总功率输出的不利影响。对于给定的气体流速,排数达到最佳值,由于连续排之间的轴向传导增加,上游TEG排的热侧温度显着下降。在这项研究中引入了术语“功率增益”,作为从没有轴向传导的系统输出的功率与有轴向传导的系统之间输出的功率之比。功率增益显示出限制通过热交换器的轴向传导的潜在好处,并且相对较低的排气流量(约0.02 kg / s)可获得高达1.2倍的值(功率增加20%)。开发了新颖的性能图,以将功率输出与热交换器设计,排气流量和TEG数量相关联。这样的地图可用于指导优化TEG集成废热回收系统的设计。

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