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Power optimization and economic evaluation of thermoelectric waste heat recovery system around a rotary cement kiln

机译:水泥回转窑热电余热回收系统的功率优化与经济评价

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摘要

Cement rotary kiln is the main device utilized for industrial cement production in large scale. The shell temperature can reach several hundred Celsius degrees. Therefore, a thermoelectric waste heat recovery system can be utilized based on its advantages. In this study, an arc shaped absorber is designed and temperature distribution along the absorber circumference is obtained numerically. The calculated temperature is considered as the hot side temperature of thermoelectric generators (TEGs) that recover thermal energy on the absorber. In situations where the heat is free, the metric for designing a thermoelectric system is to reach the maximum power output. In order to reach regional optimal power from parametric design, the absorber length is divided into several sections. For efficient design of the TEG in each section, effect of significant parameters such as leg length and fill factor of the TEG and thermal resistance of the heat sink are studied. Effect of variation of the temperature and velocity magnitudes of the air next to the heat sinks is considered on thermal resistance and performance of the pin-fin heat sinks along the absorber. beta-phase zinc antimonide (Zn4Sb3) and magnesium tin silicide (Mg2SiSn) are chosen as the p- and n-leg thermoelectric materials of the TEGs, respectively, because of their relatively high performance over the considered range of operating temperature. The results show that, staggered arrangement of the pin-fins is more effective for higher power generation and system performance compared to in-line arrangement of the fins. Moreover, by evaluation of the results, maximum matched power output in each section versus the fill factor and leg length can be determined in this study. The results show that, low fill factors between 0.05 and 0.2 can provide relatively a same maximum power as high fill factors. Furthermore, an economic evaluation is carried out to find optimal design of the TEG device for highest power generation and lowest investment cost. Various parameters of the cost function, such as cost of the bulk raw material (CB), manufacturing cost associated with processing bulk material (C-M,C-B), areal manufacturing cost (C-M,C-A), heat exchanger cost (CH-Ex), balance of the system cost (C-BoS) and the installation cost (C-l) are taken into account in this study. The results show dominant parameter in the system cost is the heat sink. (C) 2019 Elsevier Ltd. All rights reserved.
机译:水泥回转窑是大规模生产工业水泥的主要设备。外壳温度可以达到几百摄氏度。因此,基于其优点,可以利用热电废热回收系统。在这项研究中,设计了一个弧形吸收器,并沿数值获得了沿吸收器圆周的温度分布。计算出的温度被认为是热电发生器(TEG)的热侧温度,该热电发生器在吸收器上回收热能。在无热量的情况下,设计热电系统的指标是达到最大功率输出。为了通过参数设计达到区域最佳功率,吸收器的长度分为几个部分。为了有效地设计每个部分的TEG,研究了重要参数(例如,腿长和TEG的填充系数以及散热器的热阻)的影响。考虑散热片旁边的空气的温度和速度大小变化对沿吸收器的针翅式散热片的热阻和性能的影响。选择β相锑化锌(Zn4Sb3)和硅化镁锡(Mg2SiSn)分别作为TEG的p腿和n腿热电材料,因为它们在考虑的工作温度范围内具有相对较高的性能。结果表明,与鳍片的串联布置相比,交错布置的鳍片对于更高的发电量和系统性能更有效。此外,通过评估结果,可以确定本研究中每个部分的最大匹配功率输出与填充因子和腿长的关系。结果表明,介于0.05和0.2之间的低填充因子可以提供与高填充因子相对相同的最大功率。此外,进行了经济评估以找到最佳的TEG装置设计,以实现最高的发电量和最低的投资成本。成本函数的各种参数,例如散装原材料的成本(CB),与处理散装材料相关的制造成本(CM,CB),面制造成本(CM,CA),热交换器成本(CH-Ex),在这项研究中考虑了系统成本(C-BoS)和安装成本(Cl)的平衡。结果表明,系统成本中的主要参数是散热器。 (C)2019 Elsevier Ltd.保留所有权利。

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