1、

We also demonstrated that the thermoelectric coefficient is different when Na atom on different sites, and we find the calculated results agreement with the experimental data well.

计算还发现,Na原子占据不同位置时NaxCoO2的热电系数也不同,并把计算结果与实验进行了比较,结果符合较好。

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2、

By means of summarizing and comparing the method and result of both the experiment and numerical simulation, the influence of thermoelectric coefficient, ventilation capacity, and working current on the performance of the prototype was analyzed.

通过对实验和数值模拟结果方法的总结和比较,分析了热电系数、风量、工作电流等不同参数对空调样机性能的影响。

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3、

On the basis of numerical simulation of fluid-solid conjugate heat transfer on the hot side gas tank of the thermoelectric power generation device, an evaluation of flat-plate thermal energy device surface temperature uniformity index-temperature uniformity coefficient is proposed.

对该温差发电装置热端气箱进行流固共轭换热数值仿真,并提出一种评价平板式温差发电装置表面温度均匀性的指标&温度均匀性系数。

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4、

The results show that thermoelectric cost-apportion method based on product degree coefficient not only adapts to all kinds of co-generation enterprises, but also can be conveniently used in actual engineering.

结果表明,基于产品地位系数的热电成本分摊方法不但适合各种性质的热电联产企业,而且能够方便地应用于实际工程中。

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5、

With addition of carbon, the Seebeck coefficient increases a little while the resistivity decreases. As a result, the thermoelectric power factor increases.

当样品掺入C后,Seebeck系数略有增加,电阻率减小,导致功率因子明显提高。

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6、

Because the value of Seebeck Coefficient of the semiconductor thermoelectric materials could be many times of the metals', the thermal power meter has high sensitivity, so that higher test precision could be gained for conversion efficiency of thermoelectric unicouple.

半导体温差电材料的塞贝克系数可以是金属的几倍,因此温差电热流量计的灵敏度高,热电转换效率的测量可以获得较高精度。

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7、

the seebeck coefficient s of a kind of bi-te-sb-se thermoelectric material at low temperature has been experimentally researched. based on the experiment, the function between s and t of this material has been expressed.

测定了一种Bi-Te-Sb-Se半导体热电材料在低温下的塞贝克系数随温度的变化关系,绘制了曲线并进行数值拟合;

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8、

the seebeck coefficient of nanowire arrays is much lower than that of bulk materials. the main factors to affect the thermoelectric performance are uneven distribution of the composition and the large diameter of the nanowires.

纳米线阵列的塞贝克系数远远小于块状材料,成分分布不均匀以及纳米线直径较大是影响性能提高的主要原因。

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9、

Thermodynamic Analysis of Thermoelectric Process and Measurement for Seebeck Coefficient of Thermoelectric Material

温差发电的热力过程研究及材料的塞贝克系数测定

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10、

Product Degree Coefficient and its Application in Thermoelectric Cost-apportion

产品地位系数及其在热电成本分摊中的应用

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