均匀温度场下热电冷却器热态控制

Vladimir P. Zaykov, V. Mescheryakov, Y. Zhuravlov
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引用次数: 0

摘要

通过对一级热电冷却器的可靠性指标和运行动力学指标的比较分析,对不同组合下基本参数复合体最小时的热模式控制方法进行了比较分析。对热电偶分支的温差工作范围、标准热负荷和不同几何形状进行了研究。根据研究结果,尽量减少与可靠性和工作动态指标相互作用的基本参数集,已经开发了一些当前的操作模式。根据散热器的相对温差和换热情况,对所提出的工作模式建立了最佳工作电流的数学模型进行了分析。给出了热电元件在不同几何形状分支的温差范围内不同电流运行模式下的主要参数、可靠性指标和过渡到平稳运行模式所需时间的计算结果。确定了冷却系数、散热器散热能力、相对工作电流所消耗的能量的极值,这对于控制功能的实现至关重要。在考虑到质量、尺寸、能量、可靠性和动态特性的情况下,为采用相同技术制造的单级热电器件的热状态选择最佳控制当前运行模式的可能性。基于最小化基本参数集的单级热电冷却器热状态优化调节方法允许在考虑每个限制因素的重要性的情况下找到和选择折衷的解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Control of thermal regime of thermoelectric coolers in uniform temperature field
The comparative analysis of means of control of a thermal mode at minimization of a complex of the basic parameters in various combinations with indicators of reliability and dynamics of functioning of one-stage thermoelectric cooler is resulted. The study was conducted for the operating range of temperature differences, standard heat load and different geometry of the branches of thermocouples. According to the results of research to minimize the sets of basic parameters in interaction with the indicators of reliability and dynamics of work, a number of current modes of operation have been developed. The developed mathematical models for the optimal operating current from the relative temperature difference and heat transfer of the radiator for the proposed operating modes are analyzed. The results of calculations of the main parameters, reliability indicators, and time of transition to stationary mode of operation for different current modes of operation in the range of temperature differences for different geometry of branches of thermoelements are given. The extremes of dependences of the cooling coefficient, heat dissipation capacity of the radiator, the amount of energy consumed on the relative operating current are determined, which is essential for the implementation of the control function. The possibility of choosing the current mode of operation for optimal control of the thermal regime of single-stage thermoelectric devices manufactured by the same technology, taking into account mass, size, energy, reliability and dynamic characteristics. The developed method of optimal regulation of the thermal regime of a single-stage thermoelectric cooler based on minimizing the set of basic parameters allows finding and choosing compromise solutions taking into account the importance of each of the limiting factors.
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