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Peltier cells as temperature control elements: Experimental characterization and modeling

机译:珀耳帖电池作为温度控制元件:实验表征和建模

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摘要

The use of Peltier cells to realize compact and precise temperature controlled devices is under continuous extension in recent years. In order to support the design of temperature control systems, a simplified modeling of heat transfer dynamics for thermoelectric devices is presented. By following a macroscopic approach, the heat flux removed at the cold side of Peltier cell can be expressed as Q_c = γ(T_c - T_c~(eq)), where γ is a coefficient dependent on the electric current, T_c and T_c~(eq) are the actual and steady state cold side temperature, respectively. On the other hand, a microscopic modeling approach was pursued via finite element analysis software packages. To validate the models, an experimental apparatus was designed and build-up, consisting in a sample vial with the surfaces in direct contact with Peltier cells. Both modeling approaches led to reliable prediction of transient and steady state sample temperature.
机译:近年来,使用帕尔贴(Peltier)电池来实现紧凑和精确的温度控制设备的趋势正在不断扩展。为了支持温度控制系统的设计,提出了热电设备传热动力学的简化模型。通过采用宏观方法,可以将珀耳帖电池冷端去除的热通量表示为Q_c =γ(T_c-T_c〜(eq)),其中γ是取决于电流T_c和T_c〜( eq)分别是实际和稳态冷侧温度。另一方面,通过有限元分析软件包寻求微观建模方法。为了验证模型,设计并建立了一个实验设备,该设备包含一个样品瓶,其表面直接与Peltier细胞接触。两种建模方法都可以可靠地预测瞬态和稳态样品温度。

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