By Akihiro Ametani
A scientific and accomplished advent to electromagnetic temporary in cable platforms, written by means of the the world over popular pioneer during this field
• offers a scientific and accomplished advent to electromagnetic temporary in cable systems
• Written through the the world over well known pioneer within the field
• Thorough assurance of the state-of-the-art at the subject, offered in a well-organized, logical kind, from basics and sensible applications
• A better half web site is offered
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Extra resources for Cable System Transients: Theory, Modeling and Simulation
When a cable is laid in a trough, its phase spacing tends to be small compared with other laying conditions. Since three-phase cables are laid in a trough, phase spacing is limited by the size of the trough. When the trough is made of concrete, the cable is often modeled as a pipe-type cable, considering the trough as a pipe of the pipe-type cable. When a cable is laid in a tunnel, some utilities decide to choose small phase spacing in order to save space in a tunnel and install more cables in it.
14 for d = 2 mm. 13b is observed, though the results are not given here. The difference becomes smaller as the resistivity increases. The observation indicates that the effect of the semiconducting layer on the propagation constants is dominated by its admittance but not by the impedance when the layer thickness is small and the resistivity is high. Thus the semiconducting layer can be treated as an admittance in such cases. When the thickness is large and the resistivity is low, the impedance has to be considered.
9 HVAC submarine cable. Courtesy of VISCAS Corporation Some HVAC submarine cable has three-phase cables enclosed together in armor. In this case, the submarine cable is often modeled as a pipe-type cable, considering the armor as a pipe of the pipe-type cable. 3 HVDC Submarine Cables Until recently, XLPE cables could not be adopted in a HVDC cable project with LCC–HVDC (line-commutated converter HVDC) technology. The space charge was formed in the main insulation for XLPE cables, and it could lead to an insulation breakdown when the voltage polarity was reversed.
Cable System Transients: Theory, Modeling and Simulation by Akihiro Ametani
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