
Ð’ диÑÑертации проектируютÑÑ ÑемейÑтва ÑиÑтем Ð¿Ð¸Ñ‚Ð°Ð½Ð¸Ñ Ð½Ð° оÑнове ÑверхпроводÑщих индуктивных накопителей по иÑходным данным: рабочее магнитное поле - 12 Тл, запаÑÐ°ÐµÐ¼Ð°Ñ ÑÐ½ÐµÑ€Ð³Ð¸Ñ - 100 МДж, рабочий ток - 2,5 кÐ. Были опиÑаны общие принципы поÑтроение таких ÑиÑтем. Ð’ итоге была получена Ð¾Ð¿Ñ‚Ð¸Ð¼Ð¸Ð·Ð¸Ñ€Ð¾Ð²Ð°Ð½Ð½Ð°Ñ ÑиÑтема, ÑоответÑÑ‚Ð²ÑƒÑŽÑ‰Ð°Ñ Ð¸Ñходным данным, и проведен ÑкономичеÑкий раÑчет уÑтановки.
The thesis for a master's degree designed power supply systems based on the family of superconducting inductive stores the initial data: the operating magnetic field - 12 T, stored energy - 100 MJ, operating current - 2.5 kA. the general principles of the construction of such systems have been described. The result was obtained by optimized system corresponding to the original data, and carried out an economic calculation of the installation.
ÐакопиÑели ÑнеÑгии, СвеÑÑ Ð¿ÑоводимоÑÑÑ, СвеÑÑ Ð¿Ñоводники, superconductivity, СоленоидÑ, superconducting inductive storage, ÑвеÑÑ Ð¿ÑоводÑÑий индÑкÑивнÑй накопиÑелÑ, low-temperature superconductor coil, низкоÑемпеÑаÑÑÑнÑй ÑвеÑÑ Ð¿Ñоводник
ÐакопиÑели ÑнеÑгии, СвеÑÑ Ð¿ÑоводимоÑÑÑ, СвеÑÑ Ð¿Ñоводники, superconductivity, СоленоидÑ, superconducting inductive storage, ÑвеÑÑ Ð¿ÑоводÑÑий индÑкÑивнÑй накопиÑелÑ, low-temperature superconductor coil, низкоÑемпеÑаÑÑÑнÑй ÑвеÑÑ Ð¿Ñоводник
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