Filters
Results 1 - 1 of 1
Results 1 - 1 of 1.
Search took: 0.017 seconds
Ivanov, Yu.; Radovinsky, A.; Zhukovsky, A.; Sasaki, A.; Watanabe, H.; Kawahara, T.; Hamabe, M.; Yamaguchi, S., E-mail: ivanov@isc.chubu.ac.jp2010
AbstractAbstract
[en] A liquid nitrogen (LN2) is usually used to keep the high-temperature superconducting (HTS) cable low temperature. A pump is utilized to circulate LN2 inside the cryopipes. In order to minimize heat leakage, a thermal siphon circulation scheme can be realized instead. Here, we discuss the effectiveness of thermal siphon with counter-flow circulation loop composed of cryogen flow channel and inner cable channel. The main feature of the system is the existence of essential parasitic heat exchange between upwards and downwards flows. Feasibility of the proposed scheme for cable up to 500 m in length has been investigated numerically. Calculated profiles of temperature and pressure show small differences of T and p in the inner and the outer flows at the same elevation, which allows not worrying about mechanical stability of the cable. In the case under consideration the thermal insulating properties of a conventional electrical insulating material (polypropylene laminated paper, PPLP) appear to be sufficient. Two interesting effects were disclosed due to analysis of subcooling of LN2. In case of highly inclined siphon subcooling causes significant increase of temperature maximum that can breakup of superconductivity. In case of slightly inclined siphon high heat flux from outer flow to inner flow causes condensation of nitrogen gas in outer channel. It leads to circulation loss. Results of numerical analyses indicate that counter-flow thermosiphon cooling system is a promising way to increase performance of short-length power transmission (PT) lines, but conventional subcooling technique should be applied carefully.
Source
ISS 2009: 22. international symposium on superconductivity; Tsukuba (Japan); 2-4 Nov 2009; S0921-4534(10)00487-9; Available from http://dx.doi.org/10.1016/j.physc.2010.05.231; Copyright (c) 2010 Elsevier Science B.V., Amsterdam, The Netherlands, All rights reserved.; Country of input: International Atomic Energy Agency (IAEA)
Record Type
Journal Article
Literature Type
Conference
Journal
Country of publication
CABLES, CONDUCTOR DEVICES, CONVECTION, COOLING, ELECTRIC CABLES, ELECTRIC CONDUCTIVITY, ELECTRICAL EQUIPMENT, ELECTRICAL PROPERTIES, ELEMENTS, ENERGY SYSTEMS, ENERGY TRANSFER, EQUIPMENT, FLUIDS, HEAT TRANSFER, MASS TRANSFER, MATHEMATICS, NONMETALS, ORGANIC COMPOUNDS, ORGANIC POLYMERS, PHYSICAL PROPERTIES, POLYMERS, POLYOLEFINS, SUPERCONDUCTORS, TYPE-II SUPERCONDUCTORS
Reference NumberReference Number
INIS VolumeINIS Volume
INIS IssueINIS Issue