Resumen de: CN122774742A
本专利公开了一种太阳能集热建筑外墙、智能暖通设备及系统,包括一种集热建筑外墙和智能暖通系统、阵列式集热模块、自动探温器、集热模块自动旋转装置、防火储能保温管道、并联式管道系统、智能温控单元及水循环系统。该系统通过阵列式凸透镜外墙+储能保温暖通管道+智控暖通实现高效利用太阳能进行供暖,平均节能38%,夜间温降<2℃,系统寿命≥25年。该系统结合智能向阳测温、智能对焦和智能温控暖通实现供精准集热、自动调节暖通供给,具有太阳能利用率高、储热稳定、智能便捷、绿色环保、经济实用及适应性强等特点,适用于工业和民用建筑太阳能集热外墙和暖通工程。
Resumen de: CN122771491A
本申请公开了一种光热发电耦合驱动系统的污水处理设备,包括污水容器,污水容器存放待处理污水;污水容器顶部设置有光热发电机构,光热发电机构包括吸热块,吸热块周围设置有光反射瓦,光反射瓦将阳光聚焦反射至吸热块;吸热块连接有输水件,输水件将污水输送到吸热块的底部;污水容器顶部连通有排汽管,排汽管端部设置有蒸汽发电机;蒸汽发电机电连接有蓄电设备;排汽管中设置有阳极块和阴极块,阳极块和阴极块电连接蓄电设备。本方案的有益效果可根据对上述方案的叙述得知,结构简单,设计合理,即使在气温较低的天气,由于光反射瓦的聚焦,一样能使吸热块温度升高到足够蒸发污水的温度。
Resumen de: CN122774739A
本申请提供一种太阳能热水器的控制方法、热水器、设备及存储介质。该方法包括:获取太阳能热水器的最佳光照时间,并基于最佳光照时间确定第一时间范围和第二时间范围,检测太阳能热水器的水位和温度,并基于太阳能热水器的水位和温度,控制太阳能热水器自动上水和/或启动辅助加热,其中,在第一时间范围内辅助加热后的最高温度大于在第二时间范围内辅助加热后的最高温度;该方法实现了基于光照时间和太阳能热水器的温度,自动开启辅助加热,并根据太阳能热水器的水位进行自动补水,确保为用户提供足量热水,提高了用户体验感。
Resumen de: CN122774756A
本发明提出了一种太阳能光伏光热与空气源热泵耦合联供方法及系统。属于可再生能源与建筑/工业能源系统技术领域。所述方法包括:对太阳能光伏光热组件的多源数据进行采集,对上述多源数据进行时间对齐和量纲统一处理,生成多源同步输入数据;对多源同步输入数据进行工况分区判别,生成多工况分区特征数据;通过将光伏光热相变腔组织为热泵蒸发侧的可调势场热源,与空气侧换热器、分层蓄热回路共同构成三端口蒸发网络,打破了传统方案中将低温热强行抬升后再换热的做法,大幅提高了低温热能的利用品位与系统综合能效。
Resumen de: US20260275690A1
A solar receiver for producing water from ambient humidity includes a thermal absorber in the region of a focusing axis and a casing which is transparent and concentric with respect to the thermal absorber. The absorber contains drying material which allows adsorption of humidity contained in the air and the desorption of the water vapor. The solar receiver also includes intake and emission valves connecting the thermal absorber to the external environment and a circuit which fluid-dynamically connects the thermal absorber to the casing. Humid air is directed, by a fan, inside the thermal absorber and, once the drying material is saturated, the valves are closed and the air inside the casing and the thermal absorber is heated. Once the optimum temperature is reached, the fan is activated in order to enable desorption of the water from the drying material and to collect the condensate and water in a condenser.
Resumen de: DE102025109524A1
Die vorliegende Erfindung betrifft ein innovatives Dachsystem, das mehrere Funktionen wie Regenwasserrückhaltung, Energiegewinnung und den Schutz vor den Folgen des Klimawandels vereint. Es integriert die Eigenschaften von Gründächern, Cool Roofs und Solardachtechnologien mit fortschrittlichen Energiegewinnungskomponenten, um eine multifunktionale Lösung für urbane Herausforderungen bereitzustellen. Das System adressiert die steigenden Anforderungen an nachhaltige Gebäudetechnologien in urbanen Räumen, indem es Synergien zwischen verschiedenen Technologien schafft.
Resumen de: US20260276244A1
Ceramic particles for use in a solar power tower and methods for making and using the ceramic particles are disclosed. The ceramic particle can include a sintered ceramic material formed from a mixture of a ceramic raw material and a darkening component comprising MnO as Mn2+. The ceramic particle can have a size from about 8 mesh to about 170 mesh and a density of less than 4 g/cc.
Resumen de: WO2025101695A1
A hybrid solar energy power generation system includes a thermal energy storage (TES) vessel containing a thermal mass composition operable to store thermal energy, a concentrated solar power (CSP) system, and a photovoltaic (PV) power system. The CSP system heats a first working fluid flowing in first closed flow loop via a solar collector. The heated first working fluid recirculates through the TES vessel to heat the TM composition. The PV power system generates electricity which can be delivered directly to the electric power grid or alternatively when grid demand drops energizes can electric heaters to supplement heating the first working fluid. This increases the temperature and enthalpy of the first working fluid to store additional thermal energy in the TM composition. The TES vessel is operable to heat a second working fluid to produce steam usable for industrial processes, district heating, or to power a Rankine power generation cycle.
Resumen de: EP4807985A1
Die vorliegende Anmeldung betrifft ein Montageelement (1) für eine Photovoltaikanlage. Das Montageelement umfasst eine viereckige Grundplatte (2) sowie mindestens zwei Stützelemente (4, 5), welche sich von einer ersten Hauptfläche (3) der Grundplatte weg erstrecken. Die freien Enden (11, 12) der mindestens zwei Stützelemente verlaufen relativ zueinander parallel und spannen eine erste Ebene auf. Die mindestens zwei Stützelemente sind derart geformt und dimensioniert, dass die erste Hauptfläche der Grundplatte einen Neigungswinkel von 0.1° bis 45° relativ zur ersten Ebene aufweist. Die zweite Hauptfläche (6) der viereckigen Grundplatte, welche der ersten Hauptfläche gegenüberliegt, weist einen ersten Bereich (7) auf, welchem mindestens eine Solarzelle (9), vorzugsweise jedoch eine Mehrzahl an Solarzellen, angeordnet ist, auf, wobei der erste Bereich von einer ersten Seitenkante der Grundplatte beabstandet ist. Die zweite Hauptfläche weist zwischen dem ersten Bereich und der ersten Seitenkante einen zweiten Bereich (8) auf, auf welchem keine Solarzellen angeordnet sind. Die erste Seitenkante ist diejenige Seitenkante der viereckigen Grundplatte, welche den kleinsten Abstand relativ zur ersten Ebene aufweist. Die vorliegende Anmeldung bezieht sich ferner auf eine Anordnung aus mehreren derartigen Montageelemente sowie auf eine Gebäudefläche mit mindestens einer derartigen Anordnung.
Resumen de: BG114061A
The invention relates to an adjustable thermal energy storage system for industrial, agricultural and domestic applications. It is characterized by full automation of the processes and essentially represents an intelligent, environmentally friendly, energy-saving system that improves the efficiency of the operation of the electricity transmission grid during peak loads and drops in demand, while providing independent heating of industrial, agricultural and domestic facilities using energy exclusively from renewable sources. The adjustable thermal energy storage system for industrial, agricultural and domestic applications comprises a power supply module (I) connected to an evacuable vessel (II) by means of a vacuum system (III), maintaining a vacuum in a vacuum space (23), in which a reflective system (IV) is arranged. The power supply module (I) is also simultaneously connected to a heating system (V), which is installed in a thermal energy storage vessel (VI), and to a fluid heating system (VII). The power supply module (I), the evacuable vessel (II), the vacuum system (III), the reflective system (IV), the heating system (V), the thermal energy storage vessel (VI), and the fluid heating system (VII) are connected to a control module with a monitoring system (VIII).
Resumen de: CN122763573A
本发明公开了一种光伏光热耦合多能互补建筑微电网系统,属于建筑新能源综合利用与微电网供能技术领域。该系统包括光伏光热耦合模块、风驱动摩擦纳米发电补能模块及微电网储能调度模块;其中,液冷循环结构设置于光伏组件背板与支撑层之间,用于回收光伏组件运行过程中产生的余热,并将导热介质输送至槽式光热集热器进行二次加热;经增温后的导热介质进入光热发电单元,通过换热器向有机工质传递热量,有机工质驱动膨胀机带动发电机发电;发电后的余热经余热利用单元用于建筑供热或生活热水供应,实现热能梯级利用;风驱动摩擦纳米发电补能模块用于为建筑低功耗设备提供辅助供能;各发电单元产生的电能统一接入微电网储能调度模块进行储存、调度及分配。本发明构建了“光伏余热回收—槽式光热增温—光热发电—余热利用”的热能耦合与梯级利用链路,实现建筑场景下多源能源协同供能,提高建筑能源综合利用效率。
Resumen de: CN122752788A
本公开提供一种基于环核式地埋管的太阳能‑地热能耦合供能系统,包括太阳能集热子系统、光伏发电子系统、环核式地埋管阵列、双级热泵子系统、末端用能子系统及用能侧智慧控制子系统。环核式地埋管阵列由核心高温区和环核低温区构成,二者分别通过独立供回水主管接入循环回路,核心高温区换热能力高于环核低温区。非供暖季蓄热时,优先将太阳能富余热量注入核心高温区;供暖初期或低负荷取热时,优先从环核低温区取热,形成低温拦截区,削弱核心区热量向外散失;高负荷时调用核心区蓄热量与双级热泵协同供热。本系统提高跨季节蓄热密度和回收效率,减少地下热损失,改善土壤热平衡,适用于公共建筑、园区、工业及商业综合体等多种场景。
Resumen de: CN122753146A
本文描述的实施例涉及一种用于收集蕴藏于风化层中的汽化气体的热回收装置。该热回收装置总体上包括探测车,该探测车承载与主热源协同工作的热回收元件。该热回收元件包括预热接触元件,该预热接触元件在风化层的区域被主热源加热至高温之前对该区域进行预热。随着探测车向前移动,该预热接触元件通过在与高温的区域接触的状态下移动的热回收滑橇,从高温的区域接收所收集的热量。热量通过在热回收滑橇与预热接触元件之间循环的传热介质在热回收滑橇与预热接触元件之间进行传递。
Resumen de: CN122753060A
本发明涉及高温矿物焙烧设备技术领域,具体是一种双通道固固逆流换热回转窑及焙烧方法,该回转窑在同一旋转主体内部设置外环原料通道与中心产品回流通道,二者通过共用传热隔壁相互物理隔离,热端设置热端折返腔将外环通道焙烧后的高温产品导入中心回流通道,使冷原料正向输送、高温产品反向回流,通过共用传热隔壁直接实现固固逆流换热;窑体外围设置外部加热供热区,耦合产品显热、太阳热、高温储热与硅钼棒补热,实现连续稳定的高温焙烧;本发明可缩短余热回收链条,减少中间传热损失与设备占地,降低粉尘夹带与系统能耗,提升热源利用稳定性与控温精度,适用于钾长石焙烧制肥等多种高温焙烧与余热回收工艺过程。
Resumen de: CN122752928A
本发明公开了一种槽式太阳能集热器、镜场结构及其设计方法,属于太阳能光热利用技术领域。该集热器由槽式聚光集热器与方位跟踪装置组成,将槽式聚光集热器倾斜安装于方位跟踪平台,安装倾角以系统全年最大入射角最小化为目标确定;线型接收器沿聚光轴线设于焦点位置且两端向外延伸,降低末端效应;槽式聚光器采用抛物面槽式或圆柱面拼接结构,多个集热器在平台上平行排布,多组集热器以网状并列或交错方式构成镜场。本发明通过优化安装倾角、接收器结构与镜场布局,大幅降低余弦损失,提升集热效率与土地利用率,同时结构对称稳定、抗风性能好、跟踪控制简单,有效解决传统槽式集热器余弦损耗大、结构不稳、占地偏大、成本较高等缺陷。
Resumen de: CN122729406A
本发明公开了一种基于地源热泵耦合碲化镉BIPV的分布式能源系统,属于区域供热系统技术领域。本发明包括:集成于建筑表面的碲化镉光伏组件,且其背板设有流体通道;地源热泵组件,包括蒸发器和冷凝器侧回路;储能储热子系统,用于存储热量、冷量及电能;能源管理系统,根据季节与负荷调整各子系统的运行模式,处于冬季运行模式时,流体通道将碲化镉光伏组件产生的热量传输至蒸发器侧回路,提升地源热泵组件温度并降低碲化镉光伏组件温度;处于夏季运行模式时,流体通道切换至与冷凝器侧回路相连,将地源热泵组件产生的冷量传输至碲化镉光伏组件进行降温。本发明通过流体回路和热力学原理深度耦合,提升光伏寿命、热泵效能,节约建筑能耗。
Resumen de: CN122729556A
本发明公开了一种太阳能反射镜面形调整系统及其方法。所述系统包括太阳能反射镜、支撑结构、雷达成像仪、计算机、电机。所述支撑结构位置可调,用于承载太阳能反射镜。红外成像仪采集反射镜点云数据并传输至计算机,计算机拟合软件输出反射镜面形,对比目标面形数据,输出差值,通过电机调整面形,直至调整面形至误差允许范围内,太阳能反射镜面形调整结束。本发明通过调整支撑结构与动态参考计算,实现对目标面形的快速、高精度面形校准,无需外部光源,适用于多种类型反射镜。
Resumen de: CN122729313A
本发明涉及太阳能光热技术领域,具体的说是一种光阱式太阳能高温蒸汽发生装置,包括立柱支撑组件、双轴调角追踪机构、焦点悬臂支架、碟式聚光反射镜以及光阱吸热蒸汽发生单元;碟式聚光反射镜采用多组扇形分片结构,分片背部滑动装配于弧形滑轨,配合风致供压件与弹性件,可随风力增大自动扩大分片间隙,降低迎风荷载;装置同时设置余热驱动的混合供压结构与弧形喷淋杆,利用光阱腔体余热实现液气储压,分时输出清洗液与高压气体,配合弧形喷淋杆充液下滑喷淋、排液回弹吹干的自重滑移结构,完成无外接能源的镜面自动清洁,实现自适应抗风与自清洁功能。
Resumen de: CN122729553A
本发明公开了一种导热油基复合纳米吸热工质的太阳能光热转换及储热系统,透明玻璃管两端的所述金属接口堵头均固定连接有梯形的支撑架,集热器通过支撑架支撑安装受力在施工场地安装基础上,使抛物面板被间隔在施工场地安装基础上,避免抛物面板与施工场地安装基础直接接触安装容易损坏的情况发生。添加了多壁碳纳米管粉末的导热油,在辐照强度 600W/m2 条件下,集热效率达 58%,较纯导热油系统提升 10%。
Resumen de: US20260269780A1
The present invention relates to Energy generation panel comprising at least two energy generation modules, each energy generation modules comprising a first surface presenting an energy harvesting device, a second surface, a reflecting surface, and a holding structure connecting the first and second surfaces together so as to present a volume in between, wherein the reflecting surface is configured to filter an incident sunlight thereby letting a first portion of said sunlight pass through it and reflecting a second portion of said sunlight, characterized in that said reflecting surface presents a plurality of reflecting regions differently oriented with respect to each other and each being configured to homogeneously reflect said second portion of incident light on a collecting surface of said energy harvesting device.
Resumen de: US20260269772A1
Provided is an installation structure for a solar cell module, in which a distance L between an interrupting object and a light-receiving surface end part of a solar cell closest to the interrupting object satisfies two formulas below. A height of the interrupting object is defined as D; a start time for calculation is defined as a and an end time as b; and a sun altitude (in degrees) at a time i of a date k is defined as hk,i and a solar azimuth angle (in degrees) as φk,i. An azimuth angle (in degrees) at which the installation surface faces is defined as Rφ, and an inclination angle (in degrees) of a light-receiving surface of the solar cell module is defined as Rθ. A date of the summer solstice is represented by k=1, and a date of the winter solstice is represented by k=2Lk=Db-a∫ab-coshk,isinϕk,icosRθsinRϕ-coshk,icosϕk,icosRθcosRϕ+sinhk,isinRθcoshk,isinϕk,isinRθsinRϕ+coshk,icosϕk,isinRθcosRϕ+sinhk,icosRθdiL1≤L≤L2.
Resumen de: DE102025108948A1
Die Erfindung betrifft ein Bautenschutzelement (10; 100; 300) mit zumindest einer ersten nutartigen Ausnehmung (12, 16) zur Aufnahme eines Tragelementabschnitts (214; 414) eines ein Solarmodul (210) tragenden Tragelements (212; 412), sowie mit Lastaufnahmeflächen (20, 22, 24, 26) zur Abstützung von Montagegewichten (216; 416). Die Erfindung betrifft zudem eine Solarmodulanordnung.
Resumen de: WO2026187281A1
The disclosure relates to a sunlight receiver (50), comprising: an elongated receiving chamber (40) comprising a first reflecting wall (41) for reflecting sunlight radiation towards a central position (F) of the receiving chamber (40), wherein the first reflecting wall (41) has a semi-circular shape perpendicular to the elongated extension with an elongated opening (5) for receiving radiation into the chamber (40); and an elongated concentrator (15), comprising a second reflecting wall (152) and a third reflecting wall (153) arranged at the opening (5) of the receiving chamber (40) for directing sunlight radiation towards the receiving chamber (40). The disclosure further relates to a sunlight collecting device (10).
Resumen de: WO2026185046A1
The invention relates to a floating photovoltaic system comprising: - a pair of rows of hollow cylindrical floats, each float (111A) comprising a plurality of attachment supports arranged and aligned on an outer surface; - a series of photovoltaic panels 300A, each panel of the series being attached, via at least one of its sides, to two of the attachment supports of two floats (111A) of one and the other of the two rows of a pair of rows among the at least one pair of rows of floats; the photovoltaic system being characterised in that a profiled portion is arranged, via one of its faces referred to as the contact face, against an inner surface of each float (111A) and such that the attachment supports of each float (111A) are aligned in the elongation direction and mechanically connected to the profiled portion.
Nº publicación: US20260269771A1 10/09/2026
Solicitante:
BP2 SPOLKA Z OGRANICZONA ODPOWIEDZIALNOSCIA [PL]
BP2 SPOLKA Z OGRANICZONA ODPOWIEDZIALNOSCIA
Resumen de: US20260269771A1
The subject-matter of the present invention is a modular photovoltaic roofing system comprising: plurality of modular roof panels (40) integrated with photovoltaic modules (50); an at least one longitudinal channel profile (20) for routing electrical cables (K); an at least one longitudinal side profile (30) for mounting electric or electronic devices. The subject-matter of the invention is also a solar roof equipped with the modular photovoltaic roofing system and a method of its installation.