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An exhaustive experimental study of a novel air-water based thermoelectric cooling unit

机译:新型基于空气的热电冷却装置的详尽实验研究

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摘要

In this paper, the cooling feasibility of air flow via a novel air-water based TEC system (as an alternative air cooling unit) is experimentally investigated for different climate conditions. Contrary to previous studies, thermoelectric hot side temperature was adjusted by a low constant water flow rate (and not by an air fan) which significantly increased the cold side performance of TEM. Ten parameters including T-a,T-inlet, T-w.inlet, T-a,T-outlet, T-w.outlet, T-c, T-a, m(a), m(w) throlilw and DC voltage and DC current were directly recorded by measurement instruments during the experiments. Six other parameters including q(c), q(h), COPc, COPmax, COPc/COPmax and gait were evaluated by formulas and correlations using of aforesaid measured data. Five numbers of aforementioned parameters were variant parameters. Indeed, the effect of m(a), m(w), DC voltage/current and T-a,T-inlet (variant parameters) on other impressionable parameters were investigated in present study. Optimum working condition was evaluated from a new point of view. Indeed, in this paper, it was accidently found out that, despite the descending behavior of both COP, and COPmax (due to changing of variants), the ratio of said parameters (COPc/COPmax) creates a peak point (ascending and then descending) in all cases. Said peak point can be considered as an appropriate working condition of thermoelectric units. Findings showed that, the cold side of thermoelectric system can act as an applicable air cooling system especially when the hot side of thermoelectric is cooled by a current liquid such as water. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在本文中,针对不同的气候条件,通过实验研究了通过新型的基于空气-水的TEC系统(作为替代的空气冷却装置)冷却气流的可行性。与先前的研究相反,热电热侧温度是通过恒定的低水流量(而不是通过风扇)来调节的,这显着提高了TEM的冷侧性能。测量仪器直接记录了Ta,T入口,Tw。入口,Ta,T出口,Tw。出口,Tc,Ta,m(a),m(w)油门等十个参数,以及直流电压和直流电流实验。使用上述测量数据通过公式和相关性评估包括q(c),q(h),COPc,COPmax,COPc / COPmax和步态在内的其他六个参数。五个上述参数是变量参数。实际上,在本研究中研究了m(a),m(w),DC电压/电流以及T-a,T入口(可变参数)对其他可印象参数的影响。从新的角度评估了最佳工作条件。确实,在本文中,我们偶然发现,尽管COP和COPmax都呈下降趋势(由于变体的变化),但所述参数之比(COPc / COPmax)却产生了一个峰值点(先升后降) ) 在所有情况下。所述峰值可以被认为是热电单元的合适的工作条件。结果表明,热电系统的冷侧可以用作适用的空气冷却系统,尤其是当热电的热侧被诸如水之类的当前液体冷却时。 (C)2016 Elsevier Ltd.保留所有权利。

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