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Electricity transfer carrier and processing technology therefor, and enclosure structure

机译:输电载体及其处理技术,外壳结构

摘要

An electricity transfer carrier and processing technology therefor, and an enclosure structure. The electricity transfer carrier comprises an enclosure structure and electricity transmission cables carried on the enclosure structure; the electricity transmission cables are in direct or indirect superficial contact with the inner wall of the enclosure structure; the enclosure structure is used as a heat sink of the electricity transmission cables. In the present invention, electricity transmission cables or conductors are carried on an enclosure structure, such as a cylindrical tower or a high tower to bear electricity transferring, and the enclosure structure is used as a heat sink. By using an enclosure structure which is a "heat sink" having large thermal capacity as a "cold source", an electricity transmission part can effectively improve the electricity transfer or transmission power of cables or conductors having an equivalent cross-section area, thereby improving the heat dissipation effect, increasing the flexibility of the enclosure structure in cold regions in winter, reducing the fragility, and improving the stability and the security. The electricity transmission conductors do not cause imbalance of a thermal environment in the enclosure structure, thereby improving the thermal balance capability.
机译:电力传输载体及其处理技术,以及外壳结构。输电载体包括外壳结构和承载在该外壳结构上的输电电缆。输电电缆与外壳结构的内壁直接或间接地表面接触;外壳结构用作输电电缆的散热器。在本发明中,电力传输电缆或导体被承载在诸如圆柱塔或高塔之类的封闭结构上以承担电力传输,并且该封闭结构被用作散热器。通过将作为具有大热容量的“散热器”的封闭结构用作“冷源”,电力传输部可以有效地改善具有相等横截面积的电缆或导体的电力传输或传输功率,从而改善散热效果,增加了冬季寒冷地区围护结构的柔韧性,减少了脆弱性,提高了稳定性和安全性。输电导体不会在外壳结构中引起热环境的不平衡,从而提高了热平衡能力。

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