不均匀温度场下热电冷却机组复杂混合电连接的控制

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

摘要

考虑了在不均匀温度场中,使用一组具有混合电连接和固定几何形状的热电偶分支的热电冷却装置,对具有不同功耗的无线电电子设备的一些温度依赖和热负载元件进行最佳热管理的可能性。在给定的热负载下,对于不同的温度梯度和热电偶支路几何形状,确定与最小电源电压相对应的相对工作电流的比率是推导出来的。给出了用解析法和图解法求解一阶和二阶代数方程组,为一组并联电连接的热电冷却器选择电源电压的可能性。对一组串联热电冷却器在最大制冷量下运行时的混合电连接热电冷却器的基本参数、可靠性指标和动态特性,以及一组并联电连接热电冷却器的供电电压变化进行了评估。研究结果分析表明,在综合考虑机组整体可靠性指标的情况下,从能量、质量尺寸和动态特性的相互关系出发,选择一组并联电连接热电冷却器的最佳供电电压是可能的。结果表明,通过降低并联电连接的热电冷却器组的供电电压,改善了并联电连接热电冷却器的能量、质量尺寸和动态特性,提高了并联电连接热电冷却器在不均匀温度场中的可靠性。
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 a thermoelectric cooling unit complex mixed electrical connection in an uneven temperature field
A possibility of optimal thermal management of a number of temperature-dependent and heat-laden elements of radio electronicequipment with different power dissipation in an uneven temperature field using a set of thermoelectric cooling devices with mixed electrical connection and fixed geometry of thermocouple branches has been considered.Ratios for determining the relative operating current corresponding to the minimum supply voltage at a given thermal load for different temperature gradients and thermocouple branch geometries are derived. The possibility of selecting a supply voltage for a group of thermoelectric coolers with parallel electric connection using both analytical and graphical methods of solving a system of algebraic equations of first and second orders is shown. The basic parameters, reliability indices and dynamic characteristics of a thermoelectric cooler complex with mixed electrical connection when a group of thermoelectric coolers with series electrical connection operates at maximum cooling capacity and supply voltage variation of a group of coolers with parallel electrical connection are evaluated. Analysis of the research results showed the possibility of selecting the optimum supply voltage for a group of thermoelectric coolers with parallel electric connection in the interrelation of energy, mass-dimensional and dynamic characteristics, taking into account the reliability indicators of the complex as a whole. It is shown that by reducing the supply voltage of a group of thermoelectric coolers with parallelelectric connection included in the complex, the energy, mass-size and dynamic characteristics are improved, and the reliability of the complex with mixed electric connection in an uneven temperature field is increased.
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