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    • 1. 发明申请
    • BURNER SYSTEM AND A METHOD FOR INCREASING THE EFFICIENCY OF A HEAT EXCHANGER
    • 燃烧器系统和一种提高热交换器效率的方法
    • WO2011070580A1
    • 2011-06-16
    • PCT/IL2010/001043
    • 2010-12-09
    • ZETTNER, Michael
    • ZETTNER, Michael
    • F23D14/12
    • F23C15/00F23C3/002F23C2200/00F23C2205/00F23D14/02F23D14/12F23K5/007F23R7/00
    • The present invention is a burner system that allows 'quasi continuous burning' of fluids at very high temperatures by using controlled continuous pulsing explosions or detonations instead of continuous flow and thus creating pulsing pressure waves that can be easily utilised for increasing heat exchanger efficiency. After initiation the explosions or detonations are maintained by use of infrared radiation. The pulsed explosions or detonations send their shock waves directly onto the heat exchanger walls thus introducing a bigger part of energy into the heat exchanger wall then would be possible with any other method of heat exchange. In addition the kinetic energy of the negative acceleration of the mass in the explosion or detonation wave is added as additional heat introduced into the heat exchanger walls.
    • 本发明是一种燃烧器系统,其通过使用受控的连续脉冲爆炸或爆震而不是连续流动,在非常高的温度下允许“准连续燃烧”流体,从而产生可以容易地用于提高热交换器效率的脉冲压力波。 开始之后,通过使用红外辐射来维持爆炸或爆炸。 脉冲爆炸或爆炸将其冲击波直接发送到热交换器壁上,从而将更大部分的能量引入热交换器壁,然后可以用任何其它热交换方法。 此外,爆炸或爆炸波中的质量的负加速度的动能被加入到热交换器壁中的额外的热量。
    • 2. 发明申请
    • ROTARY ENGINE AND PROCESS
    • 旋转发动机和过程
    • WO2013072913A1
    • 2013-05-23
    • PCT/IL2012/050459
    • 2012-11-15
    • ZETTNER, Michael
    • ZETTNER, Michael
    • F01C1/00
    • F01C1/20F01C11/004F01C20/14F01C21/18F01C2021/12F02G1/05F02G2254/30F02G2270/90F04C29/124Y02E10/46
    • The invention is a rotary engine comprised of at least one and usually a plurality of independent partial engines. Two different processes can be carried out in each independent partial engine both of which are used to operate the engines. The processes of the invention are basically two different and separate closed cycle processes that can both operate within the same geometric confinement, i.e. the same expansion chamber or expansion chambers, at the same time. The primary process performs the main function of converting heat to kinetic energy and is necessary in all engines of the invention. It is a unique process that uses the expansion of gases and also the contraction of the condensing gases after their expansion. The secondary process is needed for start-up and to provide additional power in case the engine might go into a stall. In most engines of the invention both processes are needed to operate the engine.
    • 本发明是由至少一个且通常多个独立的部分发动机组成的旋转发动机。 在每个独立的部分引擎中可以执行两个不同的过程,这两个引擎都用于操作发动机。 本发明的方法基本上是两个不同且分离的闭合循环过程,其可以同时在相同的几何限制(即相同的膨胀室或膨胀室)内操作。 主要过程执行将热量转换为动能的主要功能,并且在本发明的所有发动机中是必需的。 这是一个独特的过程,它使用膨胀气体,还有膨胀后冷凝气体的收缩。 启动时需要辅助过程,并提供额外的功率,以防发动机进入失速状态。 在本发明的大多数发动机中,需要两个工艺来操作发动机。