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    • 5. 发明公开
    • PROPULSION SYSTEM
    • 推进系统
    • EP2761159A1
    • 2014-08-06
    • EP12746403.0
    • 2012-07-05
    • Omnidea, Lda.
    • COSTA DUARTE PARDAL, Tiago
    • F02K9/64F02K9/68F02K9/72
    • The present invention in the field of mechanical engineering consists of an improved chemical propulsion system in which at least one of the reactants is stored in the liquid phase (10). The invention includes a conventional reaction chamber (1) and nozzle (2) and re¬ uses waste heat from the refrigeration of said reaction chamber and nozzle, transferred to, for example piping (5) containing reactant that is adjacent to them, in order to vaporize and pressurize said reactant (s) (11) in the reservoirs (3, 12). The reactant (s) are then fed, in gaseous phase to the reaction chamber (1), with their flow controlled by valves (4). The liquid and gaseous phases in each reservoir may be physically separated by a separation element (13). This invention presents a simpler constructive solution for chemical propulsion systems, and is applicable especially to liquid or hybrid rocket motors.
    • 机械工程领域中的本发明由改进的化学推进系统组成,其中至少一种反应物被储存在液相(10)中。 本发明包括常规的反应室(1)和喷嘴(2),并且将来自所述反应室和喷嘴的制冷的废热转移到例如含有与其相邻的反应物的管道(5)中 以蒸发并加压储存器(3,12)中的所述反应物(11)。 然后反应物以气相供给到反应室(1),其流量由阀(4)控制。 每个储存器中的液相和气相可以通过分离元件(13)物理分离。 本发明提出了一种用于化学推进系统的更简单的建设性解决方案,并且特别适用于液体或混合式火箭发动机。
    • 6. 发明公开
    • ACTIVE SYSTEM FOR GAS SEPARATION
    • EP3915667A1
    • 2021-12-01
    • EP20710315.1
    • 2020-01-20
    • Omnidea, Lda.
    • PARDAL, Tiago
    • B01D53/22B64B1/40B64B1/58
    • The present invention consists of a system that enhances and allows for the isolation and prevention of contamination, by diffusion, of two distinct gases separated by a membrane. The present invention is of particular use in aerostats. The present invention is characterized by the establishment of a capture volume (3) of the gases diffused by the introduction of a component (for example, a screen of porous material), and allows extraction of the gas that results from mixture of the interior gas (1) (typically lighter than air) and the exterior gas (5) (typically air) by a sub-pressure subsystem (6). The gas that results from mixture due to diffusion is removed by said sub-pressure subsystem (6) (for example, a vacuum pump), and can then be separated into the initial gases which are returned to the original sources. The capture volume (3) must be filled with a material that allows for extraction of the gas mixture without the membranes that separate the interior gas (2) from the exterior gas (4) collapsing or adhering to one another.