CN113482417A - 装配式太阳能停车棚 - Google Patents
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Abstract
本发明公开了一种装配式太阳能停车棚,包括棚架、充电桩和棚顶,所述棚顶由柔性薄膜太阳能芯片构成,所述棚架上还设有与所述充电桩电连接的电动滚筒、风感应器、压力传感器和控制芯片,当所述风感应器感应到风速超过额定值时或所述压力传感器感应到棚顶所受压力超过额定值时,所述控制芯片控制电动滚筒卷起所述柔性薄膜太阳能芯片;反之,所述柔性薄膜太阳能芯片舒展开来覆盖所述棚架。所述柔性薄膜太阳能芯片上设有ETFE透明膜。所述棚架包括分别设于两侧的侧架,及连接两侧架的前连杆和后连杆,所述侧架由上连杆、前支撑柱与后支撑柱组成。本发明的装配式太阳能停车棚,可避免遭遇飓风、冰雹等恶劣天气时受到的破坏。
Description
技术领域
本发明涉及一种太阳能停车棚,尤其涉及一种装配式太阳能停车棚。
背景技术
传统汽车使用燃油作为能源,但燃油的燃烧造成的大气污染问题不可小觑。电动汽车技术解决了燃油使用造成的后遗症,这标志着电动汽车市场的大门被打开,电力的生产将成为新的焦点。
核电铀能、潮汐能发电等新技术还不成熟,不能大规模地被利用;由于地区环境条件的差异,水利发电也不能普及;煤炭作为我国电网发电的主要支柱,不仅造成不亚于燃油样的污染,而且也不能可持续发展。太阳普照大地,太阳能没有污染,且可持续利用,太阳能充电站是依靠太阳能电池板持续地吸收太阳的辐射能量,之后光能转为电能通过电线传输并被储存在高功率电容中,最后通过电容给充电桩提供电力。
专利文献CN206942253公开了一种太阳能停车棚,包括车棚架和棚顶,棚顶由太阳能电池板组成,沿棚架的立柱方向上设有若干充电桩。这种停车棚,虽然具有遮阳挡雨充电的功能,但由于太阳能电池板是硬质板件,遇飓风等恶劣天气时,无法躲避狂风的破坏,容易遭受损失,这是现有技术的不足之处。
发明内容
本发明要解决的技术问题是提供一种装配式太阳能停车棚,它可避免遭遇飓风、冰雹等恶劣天气时受到的破坏。
本发明的技术方案是:一种装配式太阳能停车棚,包括棚架、充电桩和棚顶,其特征是:所述棚顶由柔性薄膜太阳能芯片构成,所述棚架上还设有与所述充电桩电连接的电动滚筒、风感应器、压力传感器和控制芯片,当所述风感应器感应到风速超过额定值时或所述压力传感器感应到棚顶所受压力超过额定值时,所述控制芯片控制电动滚筒卷起所述柔性薄膜太阳能芯片;反之,所述柔性薄膜太阳能芯片舒展开来覆盖所述棚架。
所述柔性薄膜太阳能芯片上设有ETFE透明膜。
所述棚架包括分别设于两侧的侧架,及连接两侧架的前连杆和后连杆,所述侧架由上连杆、前支撑柱与后支撑柱组成。
还包括连接所述前连杆和后连杆的连接杆。
所述前连杆和后连杆,由多根连杆通过法兰盘连接而成。
组成棚架的前、后支撑柱与上连杆采用冷拉弯工艺处理成弧形结构。
所述充电桩,包括蓄电柱及人机交互界面、智能卡读卡单元和充电枪。
本发明的技术效果是:通过风感应器,当天气转为飓风时,电动滚筒可以把柔性薄膜太阳能芯片自动地卷起,从而保护太阳能芯片免于收到狂风的破坏作用;而飓风过后,可以把柔性薄膜太阳能芯片舒展开来,从而在棚架上自动地开合柔性薄膜,既能发挥遮阳、避雨和充电的功能,又能躲避飓风的破坏作用;同样地,通过压力传感器可躲避冰雹的破坏作用。通过设置具有聚光效果的透明膜,可提高接收到的太阳光的照射率,增强发电效果,而且覆盖了ETFE透明膜后,可以保护光伏板表面不受自然界因素的影响,提高寿命。通过设置成弧形结构,保证了太阳能芯片从日出到日落都能得到更多的太阳光采集,进一步提高发电效率;而且组成棚架的杆件方便运输、易于安装,即装即用;本发明产品可广泛应用于私家别墅、景区、公园、医院、学校、各企事业单位等大中小型露天停车场;特别适合新能源汽车生产厂家及经销集散存放地。
附图说明
图1是本发明的停车棚的立体图。
图2是图1所示的停车棚的侧视图。
图3是本发明的停车棚的棚架的立体图。
具体实施方式
现结合附图和实施例对本发明作进一步详细说明。
参看图1~图3,本发明的停车棚,包括棚架1,其上覆盖着柔性太阳能薄膜2,所述棚架1与所述太阳能薄膜2两者呈矩形,所述太阳能薄膜2由柔性薄膜太阳能芯片和ETFE透明膜组成,通过设置ETFE透明膜组,可以提高太阳能薄膜接收到的太阳光的照射率,增强发电效果,而且ETFE透明膜组可以保护柔性薄膜太阳能芯片不受自然界恶劣环境因素的影响,提高寿命。
所述装配式停车棚棚架1侧面设置有充电桩3,所述充电桩3上设置有触摸操作屏的人机交互界面、智能卡插口、充电枪、与充电枪相连的蓄电柱及检修口,所述充电桩本体外表面覆盖有防护漆涂层。所述停车棚设置有支付扫描口以及充电接口,所述装配式太阳能停车棚外表面覆盖有防锈漆与面漆涂层。
薄膜太阳能组件能够捕捉太阳光的强弱的变化,进而转换成太阳能控制系统的输入信号,通过变换系统最大程度利用太阳能转换成电能,储存于蓄电柱中,然后,通过与蓄电柱相连的充电枪,将电能输送向外部装置如电动汽车等。
所述棚架1上设有可卷起所述柔性薄膜太阳能芯片的电动滚筒10;通过风感应器(图中未示),当天气转为飓风,且风速超过临界值时,电动滚筒10可以把柔性薄膜太阳能芯片自动地卷起,从而保护太阳能芯片免于受到狂风的破坏作用;反之,则自动地把柔性薄膜太阳能芯片舒展开来,重新覆盖住棚架1。本发明的太阳能自动开合式遮阳膜,主要是在传统矩形薄膜的基础上改进成一款弧形自动开合膜结构,将太阳能转化为电能提供给我们的电动汽车,使该装配式停车棚既能遮阳挡雨又具有充电功能。
本发明的棚架做成全装配式产品,组成棚架的所有杆件都在工厂加工完成,并预拼装,保证产品的质量与精度。现场无需任何大型安装设备与焊接作业,降低施工安全风险,减少现场安装费用,方便交通运输,拼装快捷,省时省钱。
本发明的棚架1,包括前支撑柱11、后支撑柱12、上拱杆13、前连杆14、后连杆15,为了美观,本发明的组成棚架的支撑柱11、12与上连杆13采用冷拉弯处理成弧形结构。为了便于运输,停车棚的组件采用分体结构加工,用螺栓连接组装。
前支撑柱11与后支撑柱12底部各焊接一件底板,底板设有开孔,用于设置螺栓连接件,使得与地面固定起来;前支撑柱11与后支撑12柱采取底部加劲板和腰部连接板用螺栓连接;上拱杆13与前、后支撑柱分别由连接钢板连接成整个钢骨架,每个钢骨架的前、后支撑柱分别由前、后两根连杆用螺栓连接,前连杆在工厂焊接在钢板上,钢板与钢板、组成法兰盘结构;后连杆在工厂焊接在钢板上,钢板与钢板也组成法兰盘结构;当跨度较大,为了保证结构安全稳定,前、后两根连杆中间用连接拱杆16连接,连接拱杆16两端焊接封口板后焊接双耳板,在前后连接杆中间位置焊接连接板,如跨度较大需要将连杆分体运输,可以采用法兰盘连接,
以上为装配式棚架的设计制造方案。
以上所述仅是本发明的实施方式,应当指出,对于本技术领域的专业技术人员来说,在不脱离本发明技术原理的前提下,还可以做出若干改进和润饰,这些改进和润饰不应视为本发明的保护范围。
Claims (7)
1.一种装配式太阳能停车棚,包括棚架、充电桩和棚顶,其特征是:所述棚顶由柔性薄膜太阳能芯片构成,所述棚架上还设有与所述充电桩电连接的电动滚筒、风感应器、压力传感器和控制芯片,当所述风感应器感应到风速超过额定值时或所述压力传感器感应到棚顶所受压力超过额定值时,所述控制芯片控制电动滚筒卷起所述柔性薄膜太阳能芯片;反之,所述柔性薄膜太阳能芯片舒展开来覆盖所述棚架。
2.如权利要求1所述的装配式太阳能停车棚,其特征是:所述柔性薄膜太阳能芯片上设有ETFE透明膜。
3.如权利要求1所述的装配式太阳能停车棚,其特征是:所述棚架包括分别设于两侧的侧架,及连接两侧架的前连杆和后连杆,所述侧架由上连杆、前支撑柱与后支撑柱组成。
4.如权利要求3所述的装配式太阳能停车棚,其特征是:还包括连接所述前连杆和后连杆的连接杆。
5.如权利要求3所述的装配式太阳能停车棚,其特征是:所述前连杆和后连杆,由多根连杆通过法兰盘连接而成。
6.如权利要求3~5中任一项所述的装配式太阳能停车棚,其特征是:组成棚架的前后支撑柱与上连杆采用冷拉弯工艺处理成弧形结构。
7.如权利要求1所述的装配式太阳能停车棚,其特征是:所述充电桩,包括蓄电柱及人机交互界面、智能卡读卡单元和充电枪。
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