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Performance analysis of a thermoelectric generator applied to wet flue gas waste heat recovery

机译:湿法烟气余热回收热电发电机的性能分析

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Thermoelectric generation technology, which is used to recover the waste heat of wet flue gas, is studied by establishing a mathematical model to analyze the generation characteristics of wet and dry flue gas. The effects of flue gas parameters are analyzed and discussed. The results show that differently from dry flue gas, when condensation occurs in wet flue gas, it not only releases a large amount of latent heat, but also increases the heat transfer coefficient between the flue gas and the module, and an increase in module area creates an inflection point in the output power curve for wet flue gas. Moreover, the maximum output power of wet flue gas is significantly larger than that of dry flue gas. The maximum output power and corresponding module area are clearly observed to increase as the gas flux increases, but the extreme value of generating efficiency decreases slightly. Specifically, as flue gas temperature increases, the maximum output power increases, whereas the optimal module area required remains unchanged beyond a certain temperature. In addition, an increase in the flue gas temperature has a greater impact on the performance of sensible heat. When the water vapor content decreases to a certain value, the maximum output power can be obtained without condensation. Therefore, there exists a critical water vapor content that can directly determine whether the latent heat of condensation can be recovered. This critical value increases as the flue gas temperature increases. Furthermore, increasing the flux ratio of cooling water and flue gas can also effectively reduce this critical value.
机译:通过建立数学模型分析湿法和干法烟气的产生特性,研究了用于回收湿法烟气余热的热电发电技术。分析和讨论了烟气参数的影响。结果表明,与干烟气不同的是,当湿烟气中发生凝结时,它不仅释放大量潜热,而且还增加了烟气与组件之间的传热系数,并增加了组件面积在输出功率曲线中为湿烟气创建一个拐点。此外,湿法烟气的最大输出功率明显大于干法烟气的最大输出功率。明显观察到最大输出功率和相应的模块面积随气体通量的增加而增加,但发电效率的极值却略有降低。具体地,随着烟道气温度的升高,最大输出功率增加,而所需的最佳模块面积在超过一定温度时保持不变。另外,烟道气温度的升高对显热的性能有更大的影响。当水蒸气含量降低到一定值时,可以获得最大输出功率而不会凝结。因此,存在可以直接确定是否可以回收冷凝潜热的临界水蒸气含量。该临界值随着烟气温度的升高而增加。此外,增加冷却水和烟道气的通量比也可以有效地减小该临界值。

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