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    • 1. 发明申请
    • PERMANENT MAGNETIC MALE AND FEMALE LEVITATION SUPPORTS
    • 永久磁性男性和女性提供支持
    • WO2007101271A2
    • 2007-09-07
    • PCT/US2007063052
    • 2007-03-01
    • KAZADI SANZA T
    • KAZADI SANZA T
    • H01F7/0236F16C32/0429F16C39/063
    • A permanent magnetic male and female levitation support has a first part with a cavity and a plurality of retainment mechanisms incorporated therein, and a plurality of first permanent magnets evenly distributed around the perimeter of the cavity and held in place by the retainment mechanisms, wherein the first permanent magnets produce a first rotationally invariant magnetic field around a first axis. A second part is rigidly connected to a base and produces a second rotationally invariant magnetic field around a second axis. When the first axis is aligned with the second axis, the first magnetic field and the second magnetic field simultaneously produce a repulsive force and a restorative force to levitate the first part relative to the second part.
    • 永久磁性阳性和雌性悬浮支撑体具有第一部分,其具有腔体和并入其中的多个保持机构,以及多个第一永久磁体,其均匀地分布在腔的周边周围并通过保持机构保持就位,其中, 第一永磁体围绕第一轴产生第一旋转不变磁场。 第二部分刚性地连接到基座并且在第二轴线周围产生第二旋转不变的磁场。 当第一轴线与第二轴线对准时,第一磁场和第二磁场同时产生排斥力和恢复力以相对于第二部分悬浮第一部分。
    • 2. 发明申请
    • NESTED HEAT TRANSFER SYSTEM
    • 嵌入式传热系统
    • WO2016048460A1
    • 2016-03-31
    • PCT/US2015/044536
    • 2015-08-10
    • KAZADI, Sanza, T.
    • KAZADI, Sanza, T.
    • F25B17/08
    • F24F3/147F25B15/06Y02A30/277Y02B30/62
    • A novel nested heat transfer system comprises a plurality of chained enhanced entrochemical cells with nested structures. Each enhanced entrochemical cell includes a first chamber containing desiccant, or a higher concentration solution, and a second chamber containing refrigerant, or a lower concentration solution. Preferably, the first chamber and the second chamber are connected by a conduit. Furthermore, a smaller chamber in an enhanced entrochemical cell is encapsulated by a larger chamber in an adjacent enhanced entrochemical cell, thus forming a nested structure between the two enhanced entrochemical cells. A chain of enhanced entrochemical cells with a plurality of such nested structures is conveniently modular and scalable. For the novel nested heat transfer system, the total systemic thermal gradient is the sum of individual thermal gradients and capacity of individual enhanced entrochemical cells. This design provides highly-versatile and high-capacity refrigeration and thermal transfer systems, while exhibiting an elegant design simplicity.
    • 一种新颖的嵌套式传热系统包括具有嵌套结构的多个链式增强型化学电池。 每个增强型化学电池包括含有干燥剂或较高浓度溶液的第一室和含有制冷剂的第二室或较低浓度的溶液。 优选地,第一室和第二室通过导管连接。 此外,增强型化学电池中的较小室被相邻的增强型化学电池中的较大室封装,从而在两个增强的化学电池之间形成嵌套结构。 具有多个这种嵌套结构的增强型化学细胞链是方便的模块化和可扩展的。 对于新型嵌套传热系统,总体系热梯度是个体增强化学细胞的个体热梯度和容量的总和。 该设计提供了高度通用和高容量的制冷和热转印系统,同时展现出优雅的设计简洁性。
    • 4. 发明申请
    • AN ENTROCHEMICAL ENERGY TRANSFER SYSTEM AND A PROCESS FOR OBTAINING WORK FROM ENVIRONMENTAL THERMAL ENERGY
    • 能源转移系统和从环境热能获取工作的过程
    • WO2016049613A1
    • 2016-03-31
    • PCT/US2015/052523
    • 2015-09-26
    • KAZADI, Sanza, T.
    • KAZADI, Sanza, T.
    • F28D3/04
    • F28D15/00F24V99/00F25B17/02F28D15/02F28D20/003F28D21/00F28D21/0015Y02A30/277Y02B30/62
    • An entrochemical energy transfer system and a related process for obtaining work from environmental thermal energy are disclosed. In one embodiment, a plurality of linked entrochemical cells with nested chambers provides an aggregate thermal gradient of each entrochemical cell by transferring environmental thermal energy in and/or out of the plurality of linked entrochemical cells. The aggregate thermal gradient generated from the plurality of linked entrochemical cells can be utilized as an environmentally-friendly energy source for human needs. The entrochemical energy transfer system and the related process for obtaining work from environmental thermal energy utilize a set of entropy transfers from Earth's day and night thermal energy inflows and outflows. Furthermore, in a preferred embodiment, the process for obtaining work from environmental thermal energy involves two steps, each step resulting in entropic increases and transfers.
    • 公开了一种用于从环境热能获得工作的化学能量转移系统和相关方法。 在一个实施方案中,具有嵌套室的多个连接的化学电池通过在多个连接的化学电池中转移环境热能来提供每个化学电池的聚集热梯度。 从多个连接的化学电池产生的总体热梯度可以用作人类需要的环境友好型能源。 化学能源转移系统和从环境热能获得工作的相关过程利用了一套来自地球昼夜热能流入和流出的熵传递。 此外,在优选实施例中,从环境热能获得工作的过程涉及两个步骤,每个步骤导致熵增加和转移。