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Resultados 209 resultados
LastUpdate Última actualización 28/08/2025 [06:47:00]
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Solicitudes publicadas en los últimos 60 días / Applications published in the last 60 days
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一种风电-光热-光伏一体化能源系统

NºPublicación:  CN120263038A 04/07/2025
Solicitante: 
中国华电科工集团有限公司华电中光新能源技术有限公司

Resumen de: CN120263038A

本发明涉及太阳能发电技术领域,尤其是涉及一种风电‑光热‑光伏一体化能源系统。包括风力发电机构,风力发电机构包括塔筒,塔筒顶部设有发电机舱和风电叶片;光热发电机构包括安装在塔筒中部的集热器,塔筒四周的地面上设有多个反射镜,集热器接收反射镜聚焦的太阳光,并加热导热流体;光伏发电机构包括位于塔筒外周壁上的第一光伏电池组件、位于反射镜背面的第二光伏电池组件及位于风电叶片表面的第三光伏电池组件;反射镜用于将太阳光反射至集热器或第一光伏电池组件上;风力发电机构、光热发电机构和光伏发电机构均与能源管理系统连接。本发明充分将风电、光热与光伏结合,提高了能源利用效率,减少功率波动,增强了系统的稳定性与适应性。

FLOATING PHOTOVOLTAIC ARRANGEMENT

NºPublicación:  WO2025141560A1 03/07/2025
Solicitante: 
SOLAR SENSEI INVEST AND SERVICES LTD [IL]
SOLAR SENSEI - INVESTMENT AND SERVICES LTD

Resumen de: WO2025141560A1

A floating photovoltaic (PV) arrangement for supporting at least one PV module having at least one support region, the arrangement including a first elongate float; and a second elongate float having an end that is interconnected to a side of the first elongate float, wherein at least one of the floats comprises at least one mounting location for supporting the PV module via the at least one support region thereof.

THERMOCHEMICAL REACTOR SYSTEM AND SOLAR INSTALLATION WITH A THERMOCHEMICAL REACTOR SYSTEM

NºPublicación:  US2025214056A1 03/07/2025
Solicitante: 
DEUTSCHES ZENTRUM FUER LUFT UND RAUMFAHRT E V [DE]
DEUTSCHES ZENTRUM F\u00DCR LUFT- UND RAUMFAHRT E.V
US_2025214056_A1

Resumen de: US2025214056A1

A reactor system with a heating chamber, with at least one reactor with a reactor chamber, which has a first opening, and with a first isolating device, by way of which the first opening can be opened and can be closed in a gas-tight manner, wherein a conducting device for supplying and/or removing fluid is connected to the reactor chamber, wherein the at least one reactor has at least one reaction device with at least one block of solid medium, and with at least one transporting device, by way of which the at least one reaction device can be transported out of the reactor chamber through the first opening into a first position, in which the at least one reaction device is at least partially arranged in the heating chamber, and out of the heating chamber into a second position.

Solarschindel

NºPublicación:  DE102024100028A1 03/07/2025
Solicitante: 
HANWHA Q CELLS GMBH [DE]
Hanwha Q CELLS GmbH
DE_102024100028_PA

Resumen de: DE102024100028A1

Die Erfindung betrifft eine Solarschindel, aufweisend einen Solarschindelkörper (1) mit einer Schindelfläche (10) und einen Haken (2), der mit dem Solarschindelkörper (1) über ein Verbindungsmittel (6) verbunden ist, wobei der Haken (2) und das Verbindungsmittel (6) derart ausgebildet und eingerichtet sind, dass der Haken (2) zwischen einer Transportposition, in der die Solarschindel transportiert wird, und einer Montageposition mechanisch verstellbar ist, in der der Haken (2) den Solarschindelkörper (1) an einem Dachlattungsbalken (4) befestigt.

PLANT AND METHOD FOR DESALINATING SEAWATER BY EVAPORATION USING SOLAR ENERGY

NºPublicación:  WO2025141256A1 03/07/2025
Solicitante: 
MUSSY ALEXANDRE LOHD [FR]
MUSSY, Alexandre-Lohd
FR_3157377_PA

Resumen de: WO2025141256A1

The present invention relates to a plant for desalinating seawater of the type made up of a succession of cells (60, 62, 64) each provided with a tank (78), the plant comprising: a condenser (72) consisting of a bundle of tubes open at their two ends; a first pump (40) capturing the seawater by suction ducts (36) and supplying a boiler (34) capable of heating this seawater in order to generate a primary pure steam (46) sent via a circuit (44, 52, 56) to the inlet of each of the condensers (72); a second pump (76) supplying the tanks (78) of the cells (60, 62, 64) with seawater which is sprayed onto the condensers (72) via nozzles (84) arranged at the top of the tanks (78); nozzles (85) also arranged at the top of the tanks (78) to discharge the secondary pure steam (50) resulting from the contact between the sprayed seawater and the condensers (72). Such a plant is characterised in that: it further comprises a heat exchanger device (32) inside the boiler (34) allowing the latter to generate a primary pure steam (46) at a temperature of at least 300°C; in that the cells (60, 62, 64) include partitioned steam circuits which are separated from one another and do not deliver steam from one to the other; and in that it also comprises means for supplying the cells (60, 62, 64) with primary pure steam (46) and seawater, respectively.

APPARATUS AND METHOD FOR FOCUSING SUNLIGHT AT HIGH POWER AND CONCENTRATION

NºPublicación:  US2025216648A1 03/07/2025
Solicitante: 
ARIZONA BOARD OF REGENTS ON BEHALF OF THE UNIV OF ARIZONA [US]
Arizona Board of Regents on Behalf of the University of Arizona
US_2025216648_A1

Resumen de: US2025216648A1

A heliostat includes a reflector that has at least one segment arranged in a segment assembly and that defines a reflecting surface; a rigid spaceframe structure that includes a plurality of struts joined at nodes, the plurality of struts supporting the segment assembly so as to hold the reflecting surface in a concave toroidal shape; a dual-axis mount constructed and arranged to support and orient the rigid spaceframe structure and the segment assembly so as to reflect sunlight incident on the reflecting surface toward a distant receiving surface, the dual-axis mount including at least two drives; at least one mechanical linkage coupled to at least one drive of the dual-axis mount and configured to change a relative position of at least two nodes of the rigid spaceframe structure in synchronization with motion of the at least one drive, and thereby changing a shape of the rigid spaceframe structure and the reflector.

MOBILE SOLAR GENERATOR

NºPublicación:  MX2025001010A 01/07/2025
Solicitante: 
TRYSTAR LLC [US]
TRYSTAR, LLC
MX_2025001010_A

Resumen de: MX2025001010A

A mobile solar generator can include a housing, wheels and outriggers coupled to the housing, a solar array including solar panel(s), a user interface, and a controller in communication with the user interface. The mobile solar generator can include a sensor tower supporting wind sensor. The outriggers, solar array, and/or weather tower can be configured to be stored and/or deployed. The solar array orientation can be adjusted to track the position of the sun, for example, based on a determined facing direction of the mobile solar generator. The solar array can be configured to enter into a safe-mode configuration in response to certain weather conditions such as high winds. The mobile solar generator can generate electrical energy and include one or more batteries and/or a nonrenewable energy source. A controller can control various functions of the mobile solar generator.

装配式建筑墙板余热回收方法及系统

NºPublicación:  CN120232301A 01/07/2025
Solicitante: 
建泰建设有限公司
CN_120232301_A

Resumen de: CN120232301A

本发明公开了装配式建筑墙板余热回收方法及系统,属于节能型热交换装置技术领域,其包括获取装配式墙板的预埋结构参数,基于预埋结构参数生成墙板的分区结构参数;利用预设的热虹吸效应梯度模型生成热虹吸梯度参数,并基于热虹吸梯度参数配置墙板空腔的导流路径;通过压力差动态控制余热气流的流动速率并基于分区结构参数获取各墙板分区的实时温度数据及流量数据,生成动态热调控指令,将余热按预设梯度划分为一级热网和二级热网,并分配到对应终端设备。本发明采用热虹吸效应梯度模型动态配置导流路径,并结合微型涡轮扇与跨系统协同分配机制,能够提升余热回收效率,降低运行能耗,实现建筑节能与能源系统的优化集成。

SWIMMING POOL WATER PURIFICATION SYSTEM

Nº publicación: BG113834A 30/06/2025

Solicitante:

PLOVDIVSKI UNIV PAISIY HILENDARSKI [BG]
POPOV RUMEN KOSTADINOV [BG]
LYUBOMIROV SLAVI YASENOV [BG]
\u041F\u041B\u041E\u0412\u0414\u0418\u0412\u0421\u041A\u0418 \u0423\u041D\u0418\u0412\u0415\u0420\u0421\u0418\u0422\u0415\u0422 \"\u041F\u0410\u0418\u0421\u0418\u0419 \u0425\u0418\u041B\u0415\u041D\u0414\u0410\u0420\u0421\u041A\u0418\",
\u041F\u043E\u043F\u043E\u0432, \u0420\u0443\u043C\u0435\u043D,
\u041B\u044E\u0431\u043E\u043C\u0438\u0440\u043E\u0432, \u0421\u043B\u0430\u0432\u0438

BG_113834_A

Resumen de: BG113834A

The swimming pool water purification system belongs to the wastewater purification facilities using solar energy and can be used in both outdoor and indoor swimming pools. It uses three purification components: an overflow for surface contamination, a sand filter (3) with a circulation pump (6) for insoluble contaminants and suspensions, and a purification reactor (5) for bacterial, viral and fungal contamination. The water in the purification reactor (5) is heated to 70°C by the thermal part of a photovoltaic-thermal panel (2), which is connected to a heat exchanger (13) installed in the purification reactor (5), for at least ten minutes. The circulation of the water from the swimming pool with overflow (1) is ensured by a circulation pump (6), and the circulation of the fluid in the solar circuit is ensured by a second circulation pump (12). The two pumps are connected via electrical connections to the photovoltaic part of a photovoltaic-thermal panel (2).

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