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Guide for Loading Oil-Immersed Distribution and Power Transformers
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American National Standards Institute Standard No. C57.92, June
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“Guide for Loading Oil-Immersed Distribution and Power Transformers.” American National Standards Institute Standard No. C57.92, June 1962.
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(1962)
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2
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84938010043
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Guide for Loading Oil Immersed Power Transformers with 65°C Average Winding Rise
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National Electrical Manufacturers Association Publication No. TR98-1964
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“Guide for Loading Oil Immersed Power Transformers with 65°C Average Winding Rise.” National Electrical Manufacturers Association Publication No. TR98-1964.
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4
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84937646906
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The Calculation of the Temperature Rise and Load Capability of Cable Systems
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October
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J. H. Neher, and M. H. McGrath, “The Calculation of the Temperature Rise and Load Capability of Cable Systems.” AIEE Transactions, pt. III, Vol. 76, pp. 752–772, October 1957.
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Neher, J.H.1
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6
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Effect of Elevated Temperature Operation on the Strength of Aluminum Conductors
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September / October
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J. R. Harvey, “Effect of Elevated Temperature Operation on the Strength of Aluminum Conductors.” IEEE Transactions on Power Apparatus and Systems, Vol. PAS-91, pp. 1769–1772, September / October 1972.
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Harvey, J.R.1
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7
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84937078039
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Current Carrying Capacity of ACSR
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February
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H. E. House and P. D. Tuttle, “Current Carrying Capacity of ACSR,” AIEE Transactions, pt. III, Vol. 78, pp. 1169–1177, February 1959.
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House, H.E.1
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84939705455
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Resistance and Reactance of Aluminum Conductors
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Alcoa Aluminum Overhead Conductor Engineering Data No. 5
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“Resistance and Reactance of Aluminum Conductors,” Alcoa Aluminum Overhead Conductor Engineering Data No. 5.
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9
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84938158342
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A New Thermal Rating Approach: The Real Time Thermal Rating System for Strategic Overhead Conductor Transmission Lines, Part II, Steady State Thermal Rating Program
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May/June
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M. W. Davis, “A New Thermal Rating Approach: The Real Time Thermal Rating System for Strategic Overhead Conductor Transmission Lines, Part II, Steady State Thermal Rating Program.” IEEE Transactions on Power Apparatus and Systems, Vol. PAS-96, pp. 810–825, May/June 1977.
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(1977)
IEEE Transactions on Power Apparatus and Systems
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Davis, M.W.1
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10
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84939348145
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The Current Carrying Capacities of Overhead Line Conductors
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IEEE Paper No. A 78 575-3
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V. T. Morgan, “The Current Carrying Capacities of Overhead Line Conductors,” IEEE Paper No. A 78 575-3.
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Morgan, V.T.1
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84937652127
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Emissivity and Its Effect on the Current Carrying Capacity of Stranded Aluminum Conductors
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October
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C. S. Taylor and H. E. House, “Emissivity and Its Effect on the Current Carrying Capacity of Stranded Aluminum Conductors.” AIEE Transactions, pt. III, Vol. 75, pp. 970–976, October, 1956.
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Taylor, C.S.1
House, H.E.2
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12
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33749744328
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The Determination of Temperature Transients in Cable Systems by Means of an Analog Computer
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October
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J. H. Neher, “The Determination of Temperature Transients in Cable Systems by Means of an Analog Computer.” AIEE Transactions, pt. III, Vol. 70, pp. 1361–1371, October 1951.
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Neher, J.H.1
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13
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84938003779
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A Simplified Mathematical Procedure for Determining the Transient Temperature Rise of Cable Systems
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August
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J. H. Neher, “A Simplified Mathematical Procedure for Determining the Transient Temperature Rise of Cable Systems.” AIEE Transactions, pt. III, Vol. 72, pp. 712–718, August 1953.
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Neher, J.H.1
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The Transient Temperature Rise of Buried Cable System
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February
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J. H. Neher, “The Transient Temperature Rise of Buried Cable System.” IEEE Transactions on Power Apparatus and Systems, Vol. PAS-83, pp. 102–114, February 1964.
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Neher, J.H.1
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15
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An Improved Approximate Technique for Calculating Cable Temperature Transients
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April
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F. C. Van Wormer, “An Improved Approximate Technique for Calculating Cable Temperature Transients.” AIEE Transactions, pt. III, Vol. 74, pp. 277–280, April 1955.
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Van Wormer, F.C.1
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16
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68949210032
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Creep Equations of Conductors for Sag-Tension Calculations
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IEEE Paper No. C 72 190-2
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J. R. Harvey and R. E. Larson, “Creep Equations of Conductors for Sag-Tension Calculations,” IEEE Paper No. C 72 190-2
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Harvey, J.R.1
Larson, R.E.2
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