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Thermal reactor operating in infrared radiation spectrum having primary power source external source of laser radiation
Thermal reactor operating in infrared radiation spectrum having primary power source external source of laser radiation
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机译:在红外辐射光谱下运行的热反应堆,具有主电源外部激光辐射源
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摘要
Thermal reactor operating in the infrared region whose primary energy source is an external source of laser radiation, consisting of a rotatably mounted cylindrical reactor housing formed by a peripheral annular skirt (5) the reactor inlet subassembly (5.1) and an opposite support base (5.2), whereby the outer the wall of the annular shell (5) faces the inner wall of the protective barrier (4) in the form of rings, to the outer side of the associated external space (2) is about the entire jejíválcové outer surface precede system consecutive teplosmernných surfaces (7.1) kompaoudních thermal powertrain provided with fokusátory of receiving (7) or other heat transfer surfaces belonging to other heat engines. In the middle part the input podsavy (5.1) is an inlet opening (5.3), which is adapted to penetrate the primary defocused laser beam (9) incident on the planar reflection mirror (6) and / or a primary focused laser beam (10) impinging on a convex defokusacní the mirror (8) that are positioned in the inner space (1) of cylindrical reactor housing on the axis (o) of the peripheral annular skirt (5) of the reactor, whereby the reflected sekundárnílaserový beam (10.1) of the convex mirror is directed to the circumferential slot (9.2, 10.2) formed in the a peripheral annular skirt (5) through the aperture (6.2) of the planar reflector and / or through the aperture (8.2) of the convex mirror to the respective heating zones (6.3, 8.3) of the protective barrier (4). Aperture (6.2) rovinnéhozrcadla is formed by a planar partition provided with a direction through hole (6.4) of the secondary beam planar reflector and the aperture (8.2) of the convex mirror is formed by a planar partition provided with a direction through hole (8.4) of the secondary beam of the convex mirror.
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