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    • 71. 发明申请
    • HEAT TRANSFER METHODS FOR OCEAN THERMAL ENERGY CONVERSION AND DESALINATION
    • 用于海洋热能转换和脱盐的热转移方法
    • WO2008042893A2
    • 2008-04-10
    • PCT/US2007080178
    • 2007-10-02
    • PRUEITT MELVIN L
    • C02F1/16F03G7/05
    • F03G7/05B01D1/0047B01D1/26B01D3/10B01D5/0036C02F1/046C02F1/048Y02A20/109Y02A20/128Y02E10/34
    • A means is provided to produce fresh water from seawater on both the boiler side and the condenser side of an OTEC power plant. Part of the warm ocean surface water is evaporated, and its vapor transfers heat to the working-fluid boiler as the vapor condenses. The condensation of the vapor provides fresh water. On the condenser side, the condensation of the working-fluid vapor from the turbine in the condenser releases heat that evaporates seawater that runs down the outside of the condenser surfaces. The vapor from the seawater is condensed by a heat exchanger that uses input from colder seawater. As the cold seawater accepts heat from the condensing vapor, it becomes slightly warmer and provides the source of seawater that accepts heat from the condenser. The condensing vapor on the heat exchanger becomes fresh water that is drawn out as potable water. To provide additional fresh water, a multi-stage desalination unit uses the warm water discharge and the cold-water discharge from the OTEC plant to provide a temperature gradient that causes evaporation and condensation in each stage of the unit.
    • 提供了一种用于从OTEC发电厂的锅炉侧和冷凝器侧的海水产生淡水的装置。 一部分温暖的海洋表面水被蒸发,蒸气在蒸汽冷凝时将热量传递给工作流体锅炉。 蒸气的冷凝提供淡水。 在冷凝器侧,冷凝器中的来自涡轮机的工作流体蒸汽的冷凝物释放蒸发在冷凝器表面外部的海水的热量。 来自海水的蒸气由使用来自较冷的海水的输入的热交换器冷凝。 由于冷海水从冷凝蒸汽接受热量,所以它变得稍微加温,并提供接收来自冷凝器的热量的海水来源。 热交换器上的冷凝蒸气变成作为饮用水抽出的淡水。 为了提供额外的淡水,多级脱盐单元使用来自OTEC设备的温水排放和冷水排放来提供在单元的每个阶段中引起蒸发和冷凝的温度梯度。
    • 76. 发明申请
    • ARRANGEMENT IN OR RELATING TO A POWER PLANT
    • 或与发电厂有关的安排
    • WO1981003360A1
    • 1981-11-26
    • PCT/NO1980000016
    • 1980-05-14
    • MOE P
    • F03G07/04
    • F03G7/05Y02E10/34
    • A power plant for exploitation of the temperature difference between different water layers in a pelagic area (2), comprising a closed system which is filled with ethane which is both in the liquid and vapour phases. The system comprises two heat exchanging apparatuses (13, 9) which are in fluid communication with each other, of which the first (13) supplies heat to the ethane by means of heat exchange with water from a relatively warmer water layer, while the other (9) removes heat from the ethane by means of heat exchange with water from a colder water layer, whereby a difference in pressure is created in the system which is utilized to take energy out of the system. In order to make the system large enough and the ethane pressure high enough to give a reasonable power yield, the heat exchanging apparatuses are placed in respective chambers (5, 4) which are comprised by cavities in solid or consolidated rock (1). The necessary fluid communications (6, 17) and water pipes (10, 12, 15, 16) are also blasted in the rock with fluid cross-sections large enough to make pressure losses small.
    • 一种用于开发中上层区域(2)中不同水层之间的温差的发电厂,包括封闭系统,其中填充有液相和蒸气相中的乙烷。 该系统包括彼此流体连通的两个热交换装置(13,9),其中第一(13)通过与较温暖的水层的水进行热交换而向乙烷供热,而另一个 (9)通过与较冷的水层的水进行热交换从乙烷除去热量,从而在系统中产生用于将能量从系统中取出的压力差。 为了使系统足够大并且乙烷压力足够高以产生合理的功率产出,将热交换装置放置在由固体或固结岩石(1)中的空腔构成的相应的室(5,4)中。 流体通道(6,17)和水管(10,12,15,16)也在岩石中爆破,流体横截面足够大,使压力损失小。
    • 77. 发明申请
    • HEAT PUMP METHOD OF CONCENTRATING FLUIDS
    • 浓缩流体的热泵方法
    • WO1981002230A1
    • 1981-08-06
    • PCT/US1980000079
    • 1980-01-28
    • HUMISTON G
    • H02P09/04
    • B01D1/0082C02F1/16F03G7/05Y02E10/34
    • Apparatus (10) for concentrating fluid and for providing electrical power. The apparatus (10) comprises an evaporator (14) and a condenser (26) interconnected by a conduit (18). A heat exchanger (12) thermally couples warm liquid to the fluid in the evaporator (14). Means are provided for coupling a cool liquid to the condenser (26), thereby creating a mass flow of vapor from the evaporator (14) to the condenser (26). A prime mover (20) is interposed in the conduit (18) for converting the mass flow of vapor into mechanical movement. An electrical generator (22) is coupled to the prime mover (20) enabling an electrical control (24) to direct the output of the electrical generator (22) for operating the apparatus (10) and for directing excessive electrical energy produced by the electrical generator (22) for external use.
    • 用于浓缩流体和用于提供电力的装置(10)。 设备(10)包括蒸发器(14)和通过导管(18)互连的冷凝器(26)。 热交换器(12)将暖液热耦合到蒸发器(14)中的流体。 提供了用于将冷却液体连接到冷凝器(26)的装置,从而产生从蒸发器(14)到冷凝器(26)的蒸汽的质量流。 原动机(20)插入在导管(18)中,用于将蒸汽的质量流转换成机械运动。 发电机(22)联接到原动机(20),使得电气控制(24)能够引导发电机(22)的输出以操作设备(10)并且用于引导由电气产生的过多的电能 发电机(22)供外部使用。
    • 79. 发明申请
    • GLOBAL WARMING SOLUTION
    • 全球变暖解决方案
    • WO2018044401A1
    • 2018-03-08
    • PCT/US2017/042293
    • 2017-07-17
    • WAN, Yew Cheng
    • WAN, Yew Cheng
    • B63B38/00B63B35/00H02S20/00F03B13/10H01L31/18F03G7/05
    • F03G6/00B63B2035/4453F03D9/007F03G7/05F05B2240/93H02S20/00Y02E10/34Y02E10/46
    • The invention is a solution to the urgent problem of global warming using sodium from the oceans to remove excess carbon dioxide in the atmosphere. The energy for this is produced from marine solar energy farms situated on the oceans. The farms also harvest rainwater and solar energy and are integrated with auxiliary vessels to process the energy into renewable fuels and chemicals. Sodium bicarbonate, a by-product, is used to reduce ocean acidification. An extensive underlying flexible frame is deployed in the oceans and secures in position a conglomerate of floating catchment modules and other floating structures. The conglomerate is flexibly rafted together and supports light weight solar energy panels and wind turbines. Fresh rainwater is collected and contained in the catchment modules which also function as bioreactors to grow microalgae. Made out of thin film membranes, the low cost catchment modules may be rapidly deployed to cover several million square kilometers of ocean surface.
    • 本发明是利用来自海洋的钠去除大气中过量的二氧化碳来解决全球变暖的紧急问题。 这种能源来自位于海洋上的海洋太阳能农场。 农场还收集雨水和太阳能,并与辅助船舶结合,将能源处理成可再生燃料和化学品。 碳酸氢钠是副产品,用于减少海洋酸化。 在海洋中部署了一个广泛的底层柔性框架,并将浮动集水模块和其他浮动结构的聚合物固定在位。 这家企业集团灵活地漂移在一起,支持轻型太阳能面板和风力涡轮机。 新鲜的雨水被收集并容纳在也用作生物反应器以生长微藻的集水模块中。 由薄膜制成的低成本集水模块可以快速部署到覆盖数百万平方公里的海洋表面。
    • 80. 发明申请
    • DISPOSITIF FLOTTANT COMPORTANT UN INSERT INTERCHANGEABLE TRAVERSANT UN FLOTTEUR ET SYSTÈME DE PRODUCTION ÉLECTRIQUE ASSOCIÉ
    • 浮动装置,它具有可互换的插件通过FLOAT和生产体系动力伙伴
    • WO2018037168A1
    • 2018-03-01
    • PCT/FR2017/050753
    • 2017-03-31
    • BARDOT GROUP
    • GUERIN, PierreGROS, Guillaume
    • F03G7/05B63B35/44
    • F03G7/05B63B35/44B63B2035/442B63B2035/4433F16L1/15Y02E10/34
    • Dispositif flottant comportant un insert interchangeable traversant un flotteur et système de production électrique associé L'invention concerne un dispositif flottant (1) pour coopérer avec un insert (2) selon une liaison encastrement réversible, comportant un flotteur et présentant une lumière principale (Lp). Afin de proposer un dispositif flottant adaptable à un très grand nombre d'applications, en proposant notamment une installation éventuelle en plusieurs étapes, la lumière principale (Lp) d'un tel dispositif est agencée pour accueillir ledit insert (2). Par ailleurs, le dispositif flottant (1) comporte des moyens de fixation réversibles agencés pour maintenir une position relative dudit dispositif (1) le long de l'insert (2). L'invention concerne en outre un système flottant (20) comportant un dispositif flottant (1) selon l'invention et un insert (2) coopérant avec ledit dispositif flottant (1) selon une liaison encastrement réversible, ledit insert (2) étant conçu pour produire de l'énergie électrique (E1) au moyen du gradient thermique des océans.
    • 浮具有可互换的插件并穿过浮子系统&egrave装置;我生产Dé相关电Dé 本发明涉及一种漂浮装置(1)〜Co电子RER与连接凹部R中é可逆的插入件(2),具有浮子和PRé感觉光è主重(LP)。 为了提出一个适应性漂浮设备和agrave; 一个TRè S许多应用中,特别是提供了一个安装é最终多é步骤中,光è这种装置的主要重(LP)是AGENCée计算接收所述插入件(2)。 此外,浮动装置(1)由ré固定装置;可逆AGENC(E S)的所述装置保持的相对位置(1)沿所述插入件(2)。 本发明还涉及一种系统和egrave;浮箱(20)具有浮动装置(1)根据本发明和插入件(2)鸡舍与去操作所述漂浮装置(1),其至ré嵌入键; versible,所述 插入(2)é作为CONç u到产生解能量Dé电动(E1)通过的热梯度OCé年装置