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Rating of bare overhead conductors for intermittent and cyclic currents

机译:架空裸导体额定的间歇和循环电流

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摘要

Equations are derived and solutions given for determining the variation with time of the temperature of bare overhead conductors carrying intermittent and cyclic currents. The temperature variation depends on the rate of heat input, the heat capacity of the conductor and the rate of total heat transfer. The latter is proportional to (temperature rise)q. If the heat transfer by radiation can be neglected, q=1 for forced convection and approximately 1.25 for natural convection. If radiation is not negligible, q is greater than 1, the actual value being obtained from calculations or steady-state measurements. Thermal time constants can only be used when q=1, and they are then only approximations. Measured heating- and cooling-time constants agree reasonably well with calculated values. The significance of the difference between heating- and cooling-time constants is discussed. The importance of the heat source or sink formed by the core in steel-cored conductors is shown, and calculated values of the radial thermal conductivity are similar to those found from previous steady-state measurements. Calculated temperature/time characteristics for conductors in still air are in good agreement with measured characteristics.
机译:推导方程,并给出解决方案,以确定承载间歇和循环电流的架空裸导体的温度随时间的变化。温度变化取决于热输入速率,导体的热容量和总传热速率。后者与(温度上升)q成正比。如果可以忽略辐射的热传递,则强制对流的q = 1,自然对流的1.25。如果辐射不可忽略,则q大于1,实际值可通过计算或稳态测量获得。热时间常数只能在q = 1时使用,因此它们只是近似值。测得的加热和冷却时间常数与计算值相当吻合。讨论了加热时间常数和冷却时间常数之间差异的重要性。示出了由芯在钢芯导体中形成的热源或热沉的重要性,并且径向热导率的计算值与从先前的稳态测量中得出的值相似。静止空气中导体的计算温度/时间特性与测得的特性非常吻合。

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    Morgan V.T.;

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    Commonwealth Scientific and Industrial Research Organisation (CSIRO), National Standards Laboratory, Division of Applied Physics, Sydney, Australia;

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