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Photovoltaic building integrated roof
The invention provides a photovoltaic building integrated roof, and relates to the technical field of photovoltaics. The photovoltaic building integrated roof comprises a contour plate; the plurality of photovoltaic modules are fixed on the contour plate; the photovoltaic modules are arranged in a first direction; in the first direction, the distance between two adjacent photovoltaic modules is s1, the contour plate comprises a first end and a second end which are oppositely distributed, the maximum total distance of the contour plate shielded by a first shielding object on the outer side of the first end and the shadow of the first shielding object on the outer side of the second end is f, the total length of the contour plate is L1, the length of each photovoltaic module is l1, and the length of each photovoltaic module is l2; the number of the photovoltaic modules is less than or equal to N1, N1 satisfies that l1 * N1 < = (L1-f-s1 * (N1-1)) < l1 * (N1 + 1), and N1 is a positive integer greater than or equal to 2. According to the method, shadow shielding and economic benefit maximization are both considered.
本发明提供了一种光伏建筑一体化屋面,涉及光伏技术领域。光伏建筑一体化屋面包括:压型板;以及固定在压型板上的若干光伏组件;光伏组件在第一方向上排布;在第一方向上:两个相邻的光伏组件之间的距离为s1,压型板包括相对分布的第一端和第二端,压型板被第一端外侧的第一遮挡物,以及第二端外侧的第一遮挡物的阴影所遮挡的最大总距离为f,压型板的总长度为L1,每个光伏组件的长度均为l1,光伏组件的数量小于等于N1,N1满足l1×N1≤(L1‑f‑s1×(N1‑1))<l1×(N1+1),N1为大于等于2的正整数。本发明兼顾了阴影遮挡以及经济效益的最大化。
Photovoltaic building integrated roof
The invention provides a photovoltaic building integrated roof, and relates to the technical field of photovoltaics. The photovoltaic building integrated roof comprises a contour plate; the plurality of photovoltaic modules are fixed on the contour plate; the photovoltaic modules are arranged in a first direction; in the first direction, the distance between two adjacent photovoltaic modules is s1, the contour plate comprises a first end and a second end which are oppositely distributed, the maximum total distance of the contour plate shielded by a first shielding object on the outer side of the first end and the shadow of the first shielding object on the outer side of the second end is f, the total length of the contour plate is L1, the length of each photovoltaic module is l1, and the length of each photovoltaic module is l2; the number of the photovoltaic modules is less than or equal to N1, N1 satisfies that l1 * N1 < = (L1-f-s1 * (N1-1)) < l1 * (N1 + 1), and N1 is a positive integer greater than or equal to 2. According to the method, shadow shielding and economic benefit maximization are both considered.
本发明提供了一种光伏建筑一体化屋面,涉及光伏技术领域。光伏建筑一体化屋面包括:压型板;以及固定在压型板上的若干光伏组件;光伏组件在第一方向上排布;在第一方向上:两个相邻的光伏组件之间的距离为s1,压型板包括相对分布的第一端和第二端,压型板被第一端外侧的第一遮挡物,以及第二端外侧的第一遮挡物的阴影所遮挡的最大总距离为f,压型板的总长度为L1,每个光伏组件的长度均为l1,光伏组件的数量小于等于N1,N1满足l1×N1≤(L1‑f‑s1×(N1‑1))<l1×(N1+1),N1为大于等于2的正整数。本发明兼顾了阴影遮挡以及经济效益的最大化。
Photovoltaic building integrated roof
一种光伏建筑一体化屋面
LI CAIJUN (author) / WANG SHENCUN (author) / ZHANG SONG (author) / FENG CHUNNUAN (author)
2024-03-19
Patent
Electronic Resource
Chinese
IPC:
E04D
ROOF COVERINGS
,
Dacheindeckungen
/
H02S
GENERATION OF ELECTRIC POWER BY CONVERSION OF INFRA-RED RADIATION, VISIBLE LIGHT OR ULTRAVIOLET LIGHT, E.G. USING PHOTOVOLTAIC [PV] MODULES
,
Erzeugung elektrischer Energie durch Umwandlung von Infrarot-Strahlung, sichtbarem Licht oder ultraviolettem Licht, z.B. unter Verwendung von Photovoltaik [PV]-Modulen
Photovoltaic building integrated roof photovoltaic support system
European Patent Office | 2022
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