Resumen de: CN119713611A
本发明公开了一种油田集输过程中用于加热采出液的多能互补型加热系统,包括太阳能集热系统,所述太阳能集热系统包括太阳能集热器、水箱和换热管,所述太阳能集热器与所述水箱之间利用所述换热管进行循环换热;燃气水套炉,所述燃气水套炉的热水输入端和冷水输出端分别与所述水箱的热水输出端和冷水输入端连接,所述燃气水套炉循环的热水用于加热采出液;电加热模块,所述电加热模块设置在所述水箱内,用于对所述水箱内的水进行加热。本发明的目的在于解决使用燃气水套炉或电加热炉时会导致碳排放增加,且由于高纬度地区冬季光热利用效果不稳定,存在采出液加热效果受影响的问题。
Resumen de: CN119727565A
本发明公开了一种高运动稳定性的海上浮式光伏,属于海上发电的技术领域;包括浮式载体,浮式载体的顶部设置为半圆形凹槽,半圆形凹槽中设置有滑动光伏装置,浮式载体的内部中心设置有垂直开槽,垂直开槽中设置有波浪能发电装置;波浪能装置内从到外依次设置为中心轴、线圈、滑珠式轨道、偏摆电机、滑动轨道,偏摆电机的外延与滑动轨道的内侧嵌套。本发明通过滑动装置控制光伏板不受风浪荷载影响始终保持最佳受光方向,日光追踪系统能够稳定作业,增大海上光伏的发电效率。本发明将光伏与波浪能发电装置相结合,抵抗风浪、减小纵摇,增大集成系统的稳定性,本发明的滑动装置位于支撑板内,光伏装置不易损坏,降低集成系统的运维成本。
Resumen de: CN119727539A
本申请公开了一种聚氨酯玻纤材料的光伏支架,属于光伏支架技术领域,其技术方案要点是包括由聚氨酯玻纤材料制成的支撑组件,所述支撑组件包括支柱、支杆和安装板,所述支柱连接有混凝土制成的基座,所述支杆底端插设于所述支柱,并与所述支柱滑动连接,所述安装板与所述支杆顶端连接,所述安装板顶部连接有光伏板;所述支杆连接有漂浮板,所述漂浮板设于所述支柱上方,能够使所述支杆随着海水上涨而向上移动;所述支柱与所述安装板之间设有加固装置,所述加固装置的一端与所述支柱连接、另一端与所述安装板连接,用于支撑所述安装板,达到提高光伏支架的防腐性能,同时还能减小光伏板浸泡在海水中的可能性的效果。
Resumen de: CN119713579A
本发明公开了一种智慧型储能节能控制系统及其控制方法。智慧型储能节能控制系统包括保温水箱、太阳能集热器、加压泵、光伏发电系统、新风空调、水盘管换热器、补偿式热水器及用水终端。本系统使用转换阀和截止阀进行夏季、冬季模式的切换;在夏季模式中,水流通过水盘管换热器吸收室内的排风冷量对新风空调进行能量补偿的方式节能;在冬季模式中,水流一方面利用太阳能集热器产生的热量通过水盘管换热器对新风空调进行能量补偿的方式节能,另一方面利用太阳能集热器产生的热量对补偿式热水器进行能量补偿的方式节能,极大的节省了因空气循环浪费的能量以及用于提升补偿式热水器温度的能量。
Resumen de: CN119711912A
本发明公开了一种集辐射制冷与加热的多功能调节百叶节能窗,包括玻璃窗框,还包括多个百叶、双层玻璃、小型伺服电机、传动杆、传动带与轴承模块,所述玻璃窗框用于固定整个节能窗系统。本发明结构设计合理,通过集成辐射制冷技术与石墨烯吸热材料,实现夏季辐射制冷与冬季吸热的双效功能,以提高建筑能效,通过反射率和发射率均大于0.95的高性能辐射制冷层实现辐射制冷,用于降温需求,通过太阳光谱波段和红外波段吸收率大于0.95的高吸收性能石墨烯涂层实现热吸,通过调节百叶窗的角度,动态地实现辐射制冷、吸热和采光的实时调节,适应不同季节和天气条件的变化,进一步优化室内温度和采光效果,从而达到提高热舒适和节能的目标。
Resumen de: CN119713433A
本发明涉及储能技术领域,公开了一种太阳能和地热能耦合发电供热制冷控制方法,所述控制方法包括以下步骤:S1:通过用户编号模块对用户终端进行编号;S2:设置用户数据采集模块;S3:通过分析模块获得各用户的室内温度下降预设基本单位温度的时间;S4:通过分析模块获得各用户终端的保温系数;S5:采集环境温度、各用户的实时室内温度和用户状态;S6:通过分析模块对地热能供暖进行评级,并根据评级结果切换太阳能和地热能耦合发电供热制冷模式;通过各用户终端的保温系数可以更准确的计算出每个用户的单位时间内需要的热量,从而更加准确的判断太阳能和地热能耦合发电供热制冷模式;从而在满足目标区域内的各用户的供暖需求同时节约能源。
Resumen de: CN119713855A
本发明涉及烧结设备技术领域,具体提供一种月壤烧结装置,本发明的烧结装置包括移动组件以及聚光组件,其中:移动组件包括承载车、电动控制器、太阳能板、以及信号天线,承载车顶部形成有烧结平台;电动控制器设置于承载车内,用于控制承载车的行走装置行走以带动承载车移动;太阳能板设置于承载车上,电动控制器与太阳能板电连接,通过太阳能板对电动控制器供电;信号天线设置于承载车、且与电动控制器信号连接,用于接收行动指令;聚光组件包括聚光器,器设在烧结平台侧部,用于聚光以及增强传感器对热辐射变化的检测能力,本申请不仅能够在月球表面自主移动到烧结作业位置,而且通过聚光器效果聚集太阳能进行高效烧结。
Resumen de: CN119713364A
本发明涉及太阳能供暖技术领域,具体涉及一种基于太阳能的集热供暖系统及方法,包括:集热组件、热交换器;集热组件设置有多个,多个集热组件底部均与地面固定连接,多个集热组件之间连接且连通;热交换器一端与多个集热组件之间连通,热交换器另一端与供暖区域连通,热交换器上设置有温度检测器及控制模块。通过多个集热组件和高效的热交换技术,最大化地收集和转化太阳能,提高能源利用效率。使用太阳能作为供暖能源,减少对传统化石燃料的依赖,降低温室气体和其他污染物的排放;该系统的推广使用有助于推动可再生能源技术的发展和应用,符合全球可持续发展的趋势。
Resumen de: MA65547A1
The present invention relates to a method and a device for purifying unpurified water such as seawater, wherein the water is heated so that it evaporates and the water vapour is condensed to obtain purified water, wherein the purified water is allowed to flow downward via a turbine (13), (24) that drives a generator (14), (25) in order to convert the potential gravitational energy thereof into electrical energy, wherein preferably water is pumped to a higher level (III) on a raised base (2) for energy storage as potential gravitational energy and water vapour is led to a higher level (III) and after condensation is captured at a higher level (III).
Resumen de: CN119713613A
本发明公开了一种分频式光伏光热集能板,属于光热集能板技术领域。包括集能控制器;透明板座、分频单元、集热单元和光伏发电单元,所述透明板座包括透明弧形板,所述透明弧形板背面间隔一体制成有多个隔板形成多个背槽,双数的背槽内侧一体制成有围板形成分流道;所述透明板座两侧固定有汇流道;所述透明板座于分流道两端密封嵌合有过渡管;所述过渡管与汇流道密封嵌合;所述分频单元包括涂覆固化于透明板座正面,且正对背槽的分频薄膜;还包括注于汇流道和分流道内侧的分频换热液;所述集热单元包括固定于汇流道外侧中部的板座,本发明的分频式光伏光热集能板,太阳能利用率高,能够充分将太阳能转换为热能和电能。
Resumen de: CN119727590A
本发明提供一种偶联式光伏光热一体化供能系统,属于新能源技术领域。该系统,包括:多流股换热器、热电器件、蓄电装置及,自上而下依次设置的非聚焦光伏、换热流道、聚焦光伏、颗粒分频器;换热流道与多流股换热器的第一热流体通道连通形成第一热交换回路;颗粒分频器与多流股换热器的第二热流体通道连通形成第二热交换回路;热电器件与多流股换热器的冷流体通道连通形成第三热交换回路;至少两个凹面反射镜设置;非聚焦光伏的电能输出端、聚焦光伏的电能输出端及热电器件的电能输出端均与蓄电装置连接。本发明将聚焦式光伏和非聚焦式光伏耦合集成,同时对内部热量进行收集转化,能量的转化效率高,有效提高了光能的利用率。
Resumen de: CN119707327A
本发明涉及水泥制造技术领域,尤其是涉及一种适用于太阳能聚光烧成的水泥生料及其应用,通过调控生料三率值和Co3O4+MnO2含量,磨细后利用异丙醇进行充分均一化,提高生料对太阳全光谱的吸收能力,利用太阳能聚光设备烧成后的水泥熟料游离氧化钙值低,抗压强度符合标准要求。
Resumen de: CN119713360A
本申请涉及住宅调温控制技术领域,公开了一种住宅再生能源调温控制系统、方法及终端,该系统包括通信模块、储能模块、用电调度模块以及保温模块;所述通信模块配置为:通过智能电网和通信技术,对家庭能源进行实时监控和管理;所述储能模块配置为:利用储能设备储存可再生能源产生的电能,与市电切换运行;所述用电调度模块配置为:通过智能调度策略安排家用电器的使用时间;所述保温模块配置为:对室内温度进行升温或降温的调节。该方法应用于该系统,该终端与该方法相对应。采用本申请,能够实现自动调节室内温度,提供更舒适的居住环境,通过减少对传统能源的依赖,降低二氧化碳和其他温室气体的排放,有助于减缓气候变化。
Resumen de: US2025102188A1
A grid-balancing solar-thermal system contains a conventional solar-thermal system coupled with electric heaters that draw excess electric power from the grid or other electrical supply point. A thermal storage stores the excess electricity converted to heat.
Resumen de: US2025102190A1
A solar energy collection system comprising: a plurality of tracked Fresnel lens arrays; a corresponding plurality of thermal cells positioned to receive solar energy focused by the respective plurality of tracked Fresnel lens arrays; and a working fluid circulation system that circulates a working fluid through the plurality of thermal cells to a discharge point. The discharge point comprises a power conversion unit such as a thermal engine and generator.
Resumen de: US2025102189A1
A rugged Fresnel lens panel support structure and associated first and second linear actuators changes the orientation of the panels in two degrees of freedom (azimuth and elevation) to track the changing position of the sun.
Resumen de: US2025101743A1
The present disclosure relates generally to roofing systems. for example. suitable for covering the roof of a house or other building. The present disclosure relates more particularly to a roofing panel support including a bracket with a support platform configured to receive a roofing panel. a first leg extending rearward from a first side of the support platform, and a second leg extending rearward from a second side of the support platform. A hook for holding the roofing panel is coupled to the bracket and disposed below the support platform. Insulation may surround the hook. Additionally. a conductive malleable strip may be positioned between the bracket and a support structure.
Resumen de: US2025105781A1
A Fresnel lens panel is used as a solar collector. Different disclosed arrangements simplify or eliminate the need for tracking the sun's position. A self-cleaning coating may be used to keep the Fresnel surface clean.
Resumen de: WO2025061267A1
Provided is a method for manufacturing an ultrathin foil for deflecting perpendicularly incident light enabling space-based reduction of solar flux is provided. The method comprises depositing, using an ultrasonic nozzle, a solution on a forming substrate. The solution comprises a polymer material and a solvent. The polymer material has a refractive index greater than 1. Thereafter, a non-planar structure is formed on a first surface of the polymer using the forming substrate. The polymer comprises a second surface being non-parallel to the first surface of the polymer and being substantially planar. Thereafter, the solvent is evaporated such that the ultrathin foil remains. The thickness of the foil is between 8nm and 50nm. According to another aspect, an apparatus for manufacturing the ultrathin foil is provided. The apparatus comprises the ultrasonic nozzle for depositing the solution on the forming substrate, the forming substrate, and a carrier cylinder for taking an ultrathin foil from the carrier substrate after evaporating the solvent.
Resumen de: AU2023343783A1
Disclosed herein is a modular roof structure comprising a frame to which an array of solar panels are attachable. The frame comprises purlins at a periphery of the roof structure, the purlins being configured to receive edges of the solar panels thereat, and rafters arranged between the purlins in a configuration to receive opposing edges of adjacent solar panels thereat, the rafters comprising gutters for collecting water that runs off the solar panels and directing the collected water to a water outlet.
Resumen de: WO2025062332A1
Apparatus (1) for converting electromagnetic radiation into electric current and heat comprising a conversion module (2) and a concentration module (3) configured to concentrate electromagnetic radiation towards said conversion module (2). The conversion module (2) comprises a waveguide (4) configured to transmit electromagnetic radiation in a predefined wavelength range, a photoelectric layer (5) configured to absorb the electromagnetic radiation (E) transmitted by the waveguide (4), generating a first direct electric current (E1 ), a thermoelectric layer (6) configured to absorb a heat emitted by the photoelectric layer (5), generating a second direct electric current (E2), a heat exchanger (7) configured to transfer a residual heat emitted by the thermoelectric layer (6) to an external fluid (8), and an inverter (9) configured to transfer the first and the second direct electric currents (E1, E2) to an external electricity grid.
Resumen de: AU2023337225A1
Disclosed is a reflector panel assembly for use in a concentrated solar power system, the assembly comprising a reflector comprising a sheet element having a front surface and a rear surface, the reflector configured to receive and reflect electromagnetic radiation incident on the sheet element, a base configured to support the reflector such that a contact surface between the rear surface and the base is configured to maintain a predetermined shape of the reflector. Disclosed also is a base configured to support a reflector for use in a concentrated solar power system, the base composed of sheet material and comprising a plurality of protrusions spaced apart across a surface of the base, the plurality of protrusions extending to contact portions at peaks of the protrusions, the contact portions configured to form a contact surface which supports the reflector.
Resumen de: AU2023322327A1
The invention relates to a solar installation (11) having a plurality of solar panels (19) arranged in series, wherein an innermost and an outermost solar panel (19) are provided, and having at least one holding element (13) oriented in the longitudinal direction of the solar installation (11), on which holding element the solar panels (19) are held one behind the other and along which the solar panels (11) can be displaced using engagement means from an extended operating position to a retracted protected position and vice versa, wherein adjacent solar panels (19) are connected to one another in an articulated manner such that a pushing or pulling force can be transferred from one solar panel (19) to an adjacent solar panel (19). The outermost and innermost solar panel (19) are, in the protected position, pushed against one another by a mechanical force, as a result of which a stable packet of solar panels (19) is formed which enables the solar panels (19) to protect themselves against weather influences.
Resumen de: AU2023339788A1
The invention relates to a solar-thermal module as part of a solar-thermal receiver with a high level of thermal efficiency for the absorption of solar radiation for heating a heat carrier medium flowing inside each solar-thermal module. The invention also relates to a solar-thermal receiver comprising the solar-thermal modules according to the invention. The invention further relates to a method for using the solar-thermal receiver.
Nº publicación: US2025105778A1 27/03/2025
Solicitante:
EXOWATT INC [US]
Exowatt, Inc
Resumen de: US2025105778A1
A rugged Fresnel lens panel support structure changes the azimuthal orientation of the panels in a single degree of freedom using a linear actuator to track the changing position of the sun.