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    • 1. 发明申请
    • METHOD FOR COALESCENCE INDUCED LIQUID-LIQUID SEPARATIONS AND APPARATUS THEREOF
    • 用于气化诱导液液分离的方法及其装置
    • WO2010079492A1
    • 2010-07-15
    • PCT/IL2010/000023
    • 2010-01-10
    • TURBULENT TECHNOLOGIES LTD.KOKOTOV, YuriBRAGINSKY, LeonidSHTEINMAN, DavidSLONIM, Shalom, Edwin
    • KOKOTOV, YuriBRAGINSKY, LeonidSHTEINMAN, DavidSLONIM, Shalom, Edwin
    • B01D11/00
    • B01D17/00
    • A method and apparatus for separating immiscible liquids effectively are provided in the present invention. Such method and apparatus may allow coalescing of relatively small-sized droplets into larger droplets for easing and improving the degree of separation thereafter. The method may be defined by a system of equations describing the requirements and conditions imposed on the kinetics of droplet breaking and coalescence as functions of properties of the involved liquids, involved energy, and means for inducing mixing energy into the mixture. According to the method, such means may include viscosity, interfacial tension, droplet diameter distribution, average droplet diameter, average volumetric droplet diameter, concentration of the dispersed liquid in the coalescing apparatus, restricting pressure of the electrostatic double layer surrounding the interfacial boundary of the droplets, and turbulent energy dissipation distribution per volume within the coalescing apparatus.
    • 本发明提供了一种有效分离不混溶液体的方法和装置。 这样的方法和装置可以允许相对小尺寸的液滴聚集成更大的液滴以便于缓和并提高其后的分离程度。 该方法可以通过描述施加在液滴破裂和聚结的动力学上的要求和条件的等式的系统来定义,作为所涉及的液体的性质的函数,包括能量以及用于将混合能量引入混合物的手段。 根据该方法,这种方法可以包括粘度,界面张力,液滴直径分布,平均液滴直径,平均体积液滴直径,聚结装置中分散液体的浓度,限制围绕界面边界的静电双层的压力 液滴,以及聚结装置内每体积的湍流能量耗散分布。
    • 4. 发明申请
    • PHOTOVOLTAIC SOLAR POWER GENERATION SYSTEM
    • 光伏太阳能发电系统
    • WO2010014310A1
    • 2010-02-04
    • PCT/US2009/048279
    • 2009-06-23
    • SOLARIS SYNERGY LTD.KOKOTOV, YuriREYZ, Michael, A.FISHER, Joseph
    • KOKOTOV, YuriREYZ, Michael, A.FISHER, Joseph
    • B60K16/00
    • H01L31/0521F24S10/90F24S20/70F24S23/70Y02E10/44Y02E10/47Y02E10/50
    • A solar power generation system includes a plurality of individual modules, each formed from a photovoltaic cell, a solar concentrator, a sealed evaporative cooling system and a heat sink. The solar concentrator focuses sunlight onto a front side the cell to generate electricity. The cooling system circulates a coolant in a liquid state to an evaporative cooling chamber having a wall defined at least partially by a back side of the cell to remove heat from the cell by direct contact between the coolant and the cell, and emits coolant in a vapor state to a condenser where the vapor coolant is condensed to a liquid state. The heat sink may be any suitable body of water, such that the condenser may be at least partially submerged therein. The modules are combined to form a platform that is rotated on the body of water by a drive device to provide tracking of the sun.
    • 太阳能发电系统包括由光伏电池,太阳能集中器,密封蒸发冷却系统和散热器形成的多个单独模块。 太阳能集中器将阳光聚焦在电池的正面以发电。 冷却系统将液体状态的冷却剂循环到蒸发冷却室,该蒸发冷却室具有至少部分地由电池的背面限定的壁,以通过冷却剂和电池之间的直接接触来从电池中除去热量,并且在 蒸汽状态到冷凝器,其中蒸汽冷却剂被冷凝成液态。 散热器可以是任何合适的水体,使得冷凝器可以至少部分地浸没在其中。 模块组合形成一个平台,该平台通过驱动装置在水体上旋转以提供对太阳的跟踪。