Thermal analysis of power cables in multi-layered soil. II. Practical considerations
暂无分享,去创建一个
[1] E. S. Barber. CALCULATION OF MAXIMUM PAVEMENT TEMPERATURES FROM WEATHER REPORTS , 1957 .
[2] A. N. Arman,et al. Influence of soil-moisture migration on power rating of cables in h.v. transmission systems , 1964 .
[3] A. G. Milne,et al. Characteristics of soil affecting cable ratings , 1964 .
[4] H. N. Cox,et al. Thermal analysis of power cables in soils of temperature-responsive thermal resistivity , 1965 .
[5] John I. Adams,et al. The Thermal Behavior of Cable Backfill Materials , 1968 .
[6] E. R. G. Eckert,et al. HEAT AND MASS TRANSFER IN POROUS MEDIA WITH PHASE CHANGE , 1978 .
[7] J. Mitchell,et al. Temperature Distributions Around Buried Cables , 1979, IEEE Transactions on Power Apparatus and Systems.
[8] H. S. Radhakrishna. FLUIDIZED CABLE THERMAL BACKFILL , 1982 .
[9] M. Maloney,et al. SOIL THERMAL FACTORS FOR FUTURE GENERATION CABLES , 1982 .
[10] D. M. Coulter. Model for Heave and Settlement Predictions in Discontinuous Permafrost , 1983 .
[11] W. Black,et al. Emergency Ampacities of Direct Buried Three Phase Underground Cable Systems , 1983, IEEE Transactions on Power Apparatus and Systems.
[12] J. J. Dai,et al. Calculation of thermal fields of underground cables using the boundary element method , 1988 .
[13] George J. Anders,et al. Power cable thermal analysis with consideration of heat and moisture transfer in the soil , 1988 .