Wind heat generator with eddy currents

The invention relates to heat power engineering, in particular to wind heat generators with eddy currents, and can be used for converting mechanical energy into heat energy.The wind heat generator with eddy currents comprises an inductor (3) with permanent magnets (4), made of non-ferromagnetic mate...

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Main Authors SOBOR Ion, MANGOS Octavian, CIUPERCĂ Rodion
Format Patent
LanguageEnglish
Romanian
Russian
Published 31.07.2022
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Abstract The invention relates to heat power engineering, in particular to wind heat generators with eddy currents, and can be used for converting mechanical energy into heat energy.The wind heat generator with eddy currents comprises an inductor (3) with permanent magnets (4), made of non-ferromagnetic material and installed on a central shaft (7), connected to an engine (16) and fixed by means of bearings (8 and 9) in a body (17). The inductor (3) is coaxially placed with an armature of ferromagnetic material, which comprises chambers (1 and 2), forming concentric outer (13) and inner (14) water jackets with liquid heat-transfer agent, equipped with an inlet branch pipe (5) and an outlet branch pipe (6) respectively. The inductor (3) is placed in a space between the jackets (13 and 14) with the formation of gaps (11 and 12). The permanent magnets (4) are placed in longitudinal grooves (10), made on the cylindrical surface of the inductor (3). Invenţia se referă la termoenergetică, în special la generatoare termice eoliene cu curenţi turbionari, şi poate fi utilizată pentru conversia energiei mecanice în energie termică.Generatorul termic eolian cu curenţi turbionari conţine un inductor (3) cu magneţi permanenţi (4), executat dintr-un material neferomagnetic şi montat pe un arbore central (7), care este unit cu un motor (16) şi fixat prin rulmenţi (8 şi 9) într-un corp (17). Inductorul (3) este amplasat concentric cu un indus din material feromagnetic, care conţine camere (1 şi 2), formând cămăşi de apă concentrice exterioară (13) şi interioară (14) cu agent termic lichid, dotate cu un racord de admisie (5) şi un racord de evacuare (6) corespunzător. Inductorul (3) este amplasat într-un spaţiu între cămăşi (13 şi 14) cu formarea unor întrefieruri (11 şi 12). Magneţii permanenţi (4) sunt amplasaţi în caneluri longitudinale (10), executate pe suprafaţa cilindrică a inductorului (3). Изобретение относится к теплоэнергетике, в частности к ветровым теплогенераторам с вихревыми токами, и может быть использовано для преобразования механической энергии в тепловую энергию.Ветровой теплогенератор с вихревыми токами содержит индуктор (3) с постоянными магнитами (4), выполненный из неферромагнитного материала и установленный на центральном валу (7), который соединен с двигателем (16) и закреплен посредством подшипников (8 и 9) в корпусе (17). Индуктор (3) соосно размещен с якорем из ферромагнитного материала, который содержит камеры (1 и 2), формируя концентрические внешнюю (13) и внутреннюю (14) водяные рубашки с жидким теплоносителем, снабженные входным патрубком (5) и выпускным патрубком (6) соответственно. Индуктор (3) размещен в пространстве, между рубашками (13 и 14) с образованием зазоров (11 и 12). Постоянные магниты (4) размещены в продольных канавках (10), выполненных на цилиндрической поверхности индуктора (3).
AbstractList The invention relates to heat power engineering, in particular to wind heat generators with eddy currents, and can be used for converting mechanical energy into heat energy.The wind heat generator with eddy currents comprises an inductor (3) with permanent magnets (4), made of non-ferromagnetic material and installed on a central shaft (7), connected to an engine (16) and fixed by means of bearings (8 and 9) in a body (17). The inductor (3) is coaxially placed with an armature of ferromagnetic material, which comprises chambers (1 and 2), forming concentric outer (13) and inner (14) water jackets with liquid heat-transfer agent, equipped with an inlet branch pipe (5) and an outlet branch pipe (6) respectively. The inductor (3) is placed in a space between the jackets (13 and 14) with the formation of gaps (11 and 12). The permanent magnets (4) are placed in longitudinal grooves (10), made on the cylindrical surface of the inductor (3). Invenţia se referă la termoenergetică, în special la generatoare termice eoliene cu curenţi turbionari, şi poate fi utilizată pentru conversia energiei mecanice în energie termică.Generatorul termic eolian cu curenţi turbionari conţine un inductor (3) cu magneţi permanenţi (4), executat dintr-un material neferomagnetic şi montat pe un arbore central (7), care este unit cu un motor (16) şi fixat prin rulmenţi (8 şi 9) într-un corp (17). Inductorul (3) este amplasat concentric cu un indus din material feromagnetic, care conţine camere (1 şi 2), formând cămăşi de apă concentrice exterioară (13) şi interioară (14) cu agent termic lichid, dotate cu un racord de admisie (5) şi un racord de evacuare (6) corespunzător. Inductorul (3) este amplasat într-un spaţiu între cămăşi (13 şi 14) cu formarea unor întrefieruri (11 şi 12). Magneţii permanenţi (4) sunt amplasaţi în caneluri longitudinale (10), executate pe suprafaţa cilindrică a inductorului (3). Изобретение относится к теплоэнергетике, в частности к ветровым теплогенераторам с вихревыми токами, и может быть использовано для преобразования механической энергии в тепловую энергию.Ветровой теплогенератор с вихревыми токами содержит индуктор (3) с постоянными магнитами (4), выполненный из неферромагнитного материала и установленный на центральном валу (7), который соединен с двигателем (16) и закреплен посредством подшипников (8 и 9) в корпусе (17). Индуктор (3) соосно размещен с якорем из ферромагнитного материала, который содержит камеры (1 и 2), формируя концентрические внешнюю (13) и внутреннюю (14) водяные рубашки с жидким теплоносителем, снабженные входным патрубком (5) и выпускным патрубком (6) соответственно. Индуктор (3) размещен в пространстве, между рубашками (13 и 14) с образованием зазоров (11 и 12). Постоянные магниты (4) размещены в продольных канавках (10), выполненных на цилиндрической поверхности индуктора (3).
Author MANGOS Octavian
CIUPERCĂ Rodion
SOBOR Ion
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DocumentTitleAlternate Ветровой теплогенератор с вихревыми токами
Generator termic eolian cu curenţi turbionari
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RelatedCompanies UNIVERSITATEA TEHNICĂ A MOLDOVEI
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Snippet The invention relates to heat power engineering, in particular to wind heat generators with eddy currents, and can be used for converting mechanical energy...
SourceID epo
SourceType Open Access Repository
SubjectTerms BLASTING
ELECTRIC HEATING
ELECTRIC LIGHTING NOT OTHERWISE PROVIDED FOR
ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
ELECTRICITY
FLUID HEATERS, e.g. WATER OR AIR HEATERS, HAVING HEATGENERATING MEANS, IN GENERAL
HEATING
LIGHTING
MACHINES OR ENGINES FOR LIQUIDS
MECHANICAL ENGINEERING
OR A REACTIVE PROPULSIVE THRUST, NOT OTHERWISE PROVIDED FOR
PRODUCING MECHANICAL POWER
RANGES
VENTILATING
WEAPONS
WIND MOTORS
WIND, SPRING WEIGHT AND MISCELLANEOUS MOTORS
Title Wind heat generator with eddy currents
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