CN105683659B - 具有太阳能能源单元的建筑外墙显示装置及供热显示方法 - Google Patents

具有太阳能能源单元的建筑外墙显示装置及供热显示方法 Download PDF

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CN105683659B
CN105683659B CN201680000119.6A CN201680000119A CN105683659B CN 105683659 B CN105683659 B CN 105683659B CN 201680000119 A CN201680000119 A CN 201680000119A CN 105683659 B CN105683659 B CN 105683659B
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盛玉伟
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Abstract

本发明提供了一种具有太阳能能源单元的建筑外墙显示装置,包括建筑物本体,设于所述建筑物本体朝阳面外墙上的能源单元,以及与所述能源单元相通的热能量传输通道,所述传输通道连接三通阀,所述三通阀位于建筑物上部,所述三通阀横向通口通过过墙孔与室内暖风口联通,所述暖风口位于建筑物室内的上方,所述能源单元为双层中空式结构,外层为透明钢化玻璃,所述能源单元由墙体面与所述外层共同构成中空式结构,所述墙体面上设有若干降低热空气上流的缓流挡,所述缓流挡错落设置,所述缓流挡边缘围设LED光带,所述LED光带与中控单元电连接。有效利用了太阳能的温度,达到最大限度的利用太阳能的环保手段。

Description

具有太阳能能源单元的建筑外墙显示装置及供热显示方法
技术领域
本发明属于节能型建筑物取暖系统,尤其涉及一种针对建筑物环保取暖的系统。
背景技术
现有技术中,对于光照利用的方式一般局限在太阳能热水器以及太阳能光伏电池发电的上面,通常将太阳能设备架在建筑物顶端,并且呈一定角度进行摆放,以便获取相对高能的太阳辐射,但是往往建筑物的外墙所承受的光照产生的能量被人们忽视,尤其在某些人口密集的住宅区域,楼房建筑,没有充分的去利用墙壁上所能获取的太阳能,造成了空间和能量的浪费。建筑物外墙显示目前通常是通过玻璃幕墙的边缘进行固定灯条,点亮显示后远观可以看到广告用语等,对观看者要求必须达到一定远的距离方可,而且显示效果不清晰,缘于本身像素点太少。
发明内容
本发明提供一种具有太阳能能源单元的建筑外墙显示装置,旨在解决建筑物垂直墙壁太阳能获取以及利用外墙进行显示效果不佳的问题。
为了解决上述问题,本发明提供一种具有太阳能能源单元的建筑外墙显示装置,包括建筑物本体,设于所述建筑物本体朝阳面外墙上的能源单元,以及与所述能源单元相通的热能量传输通道,所述传输通道连接三通阀,所述三通阀位于建筑物上部,所述三通阀横向通口通过过墙孔与室内暖风口联通,所述暖风口位于建筑物室内的上方,所述能源单元为双层中空式结构,外层为透明钢化玻璃,所述能源单元由墙体面与所述外层共同构成中空式结构,所述墙体面上设有若干降低热空气上流的缓流挡,所述缓流挡错落设置,所述缓流挡边缘围设LED光带,所述LED光带与中控单元电连接。
优选地,所述墙体面与所述缓流挡采用深色吸热涂覆层涂覆表面。
优选地,所述LED光带与所述缓流挡组成显示像素点,而所述缓流挡上布置至少三条不同颜色的LED光带,所述显示像素点规则交错排列,上下隔层对正。
优选地,所述缓流挡采用铝合金材质,且具有向下开放的导风槽。
优选地,所述三通阀上方通口向室外连接排气通口,所述能源单元下方具有空气入口,所述空气入口处设有风机。
优选地,所述空气入口连接室内空气排出口。
优选地,所述三通阀内设有电控开关与中控单元连接。
优选地,所述三通阀下方设有温感器并与所述中控单元连接。
优选地,所述风机与所述中控单元电连接。
有益效果,通过所述光带与所述缓流挡的结合,促使显示像素缩小,从而带来清晰的显示效果,而所述光带在点亮时也会同时散发热量,通过所述气流的运行将该热量也向上运送,所述建筑物每层外表面经过照射所产生的热量向上部的三通阀横向通口供应,可以顺应热流向上运动的规律,有效利用了太阳能的温度,达到最大限度的利用太阳能的环保手段。
本发明另外还提供了一种向建筑内供热及显示信息的方法,采用上述建筑结构,所述中控单元内存储图像播放信息,通过解码编译后发送给所述光带并控制所述光带按照需要进行显示和闪烁,供热的具体工作方法如下:
S1,首先需要将中控单元进行温度设定存储,将室内所需的适宜温度数据设定;
S2,启动工作之后,所述中控单元通过所述温感器传回数据与预先设定温度值进行比对;
S3,如温度等于或高于预设值,则打开三通阀向室内传输热气流同时关闭所述三通阀的上方通口禁止其向上排出热气流;
S4,如温度低于预设值,则关闭所述三通阀的横向通口只向上方通口排出热气流;
S5,或者所述中控单元通过室内温度测量结果自动与所述温感器所测温度进行比对,如果能源单元内温度高于室温则打开所述三通阀的横向通口,如果能源单元内的温度低于室温则关闭所述三通阀的横向通口。
附图说明
图1是本发明提供的结构示意图。
图2是本发明提供的正面结构示意图。
图3是本发明提供的缓流挡与光带结构示意图。
具体实施方式
为了使本发明的目的、技术方案及优点更加清楚明白,以下结合附图及实施例,对本发明进行进一步详细说明。应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不用于限定本发明。
参照图1所示,本发明实施例提供一种具有太阳能能源单元的建筑外墙显示装置,包括建筑物本体10,设于所述建筑物本体10朝阳面外墙上的能源单元20,以及与所述能源单元20相通的热能量传输通道21,所述传输通道21连接三通阀22,所述三通阀22位于建筑物本体10上部,所述三通阀22横向通口通过过墙孔与室内暖风口23联通,所述暖风口23位于建筑物本体10室内的上方,所述能源单元20为双层中空式结构,外层24为透明钢化玻璃,所述能源单元20由墙体面25与所述外层24共同构成中空式结构,所述墙体面25上设有若干降低热空气上流的缓流挡26,所述缓流挡26错落设置,所述墙体面25与所述缓流挡26采用深色吸热涂覆层涂覆表面。所述缓流挡26采用铝合金材质,且具有向下开放的导风槽261,便于导热。所述缓流挡26边缘围设LED光带29,所述LED光带29与中控单元30电连接。所述LED光带与所述缓流挡26组成显示像素点,而所述缓流挡26上布置至少三条不同颜色的LED光带29,所述显示像素点规则交错排列,上下隔层对正。通过所述光带29与所述缓流挡26的结合,促使显示像素缩小,从而带来清晰的显示效果,而所述光带在点亮时也会同时散发热量,通过所述气流的运行将该热量也向上运送,所述建筑物外层外表面经过照射所产生的热量向上部的三通阀横向通口供应,可以顺应热流向上运动的规律,有效利用了太阳能的温度,达到最大限度的利用太阳能的环保手段。
所述三通阀22上方通口向室外连接排气通口。为了能够让空气大量循环起来,所述能源单元20下方具有空气入口27,所述空气入口处设有风机28,当太阳照射强度不足时,所述空气入口27的打开程度可以调节为小开放状态,而当太阳照射强度比较大时,可以完全打开所述空气入口27,并且可以进一步地将所述风机28启动运转,促进升温后的热空气尽快向上运行。
为了能够进一步循环,可以将所述空气入口27连接室内空气排出口,这样室内空气可以循环出来通过所述能源单元20进行加热后再次送入室内,给室内温度进一步提升。
所述三通阀22内设有电控开关31与中控单元30连接。所述三通阀22下方设有温感器32并与所述中控单元30连接。所述风机28与所述中控单元30电连接。通过所述中控单元30的控制指挥初步实现整个系统智能化工作模式,方便管控,使用者更加轻松享受本实施例产品所带来的环保供暖。
本发明实施例另外还提供了一种向建筑内供热及显示信息的方法,采用上述建筑结构,所述中控单元内存储图像播放信息,通过解码编译后发送给所述光带并控制所述光带按照需要进行显示和闪烁,供热的具体工作方法如下:
S1,首先需要将中控单元进行温度设定存储,将室内所需的适宜温度数据设定;
S2,启动工作之后,所述中控单元通过所述温感器传回数据与预先设定温度值进行比对;
S3,如温度等于或高于预设值,则打开三通阀向室内传输热气流同时关闭所述三通阀的上方通口禁止其向上排出热气流;
S4,如温度低于预设值,则关闭所述三通阀的横向通口只向上方通口排出热气流;
S5,或者所述中控单元通过室内温度测量结果自动与所述温感器所测温度进行比对,如果能源单元内温度高于室温则打开所述三通阀的横向通口,如果能源单元内的温度低于室温则关闭所述三通阀的横向通口。
以上所述仅为本发明的较佳实施例而已,并不用以限制本发明,凡在本发明的精神和原则之内所作的任何修改、等同替换和改进等,均应包含在本发明的保护范围之内。

Claims (1)

1.一种向建筑内供热及显示信息的方法,采用具有太阳能能源单元的建筑外墙显示装置,该装置包括建筑物本体,设于所述建筑物本体朝阳面外墙上的能源单元,以及与所述能源单元相通的热能量传输通道,所述传输通道连接三通阀,所述三通阀位于建筑物上部,所述三通阀横向通口通过过墙孔与室内暖风口联通,所述暖风口位于建筑物室内的上方,所述能源单元为双层中空式结构,外层为透明钢化玻璃,所述能源单元由墙体面与所述外层共同构成中空式结构,所述墙体面上设有若干降低热空气上流的缓流挡,所述缓流挡错落设置,所述缓流挡边缘围设LED光带,所述LED光带与中控单元电连接,所述LED光带与所述缓流挡组成显示像素点,而所述缓流挡上布置至少三条不同颜色的LED光带,所述显示像素点规则交错排列,上下隔层对正,所述缓流挡采用铝合金材质,且具有向下开放的导风槽,所述墙体面与所述缓流挡采用深色吸热涂覆层涂覆表面,所述三通阀上方通口向室外连接排气通口,所述能源单元下方具有空气入口,所述空气入口处设有风机,所述空气入口连接室内空气排出口,所述三通阀内设有电控开关与中控单元连接,所述三通阀下方设有温感器并与所述中控单元连接,所述风机与所述中控单元电连接,其特征在于,所述中控单元内存储图像播放信息,通过解码编译后发送给所述光带并控制所述光带按照需要进行显示和闪烁,供热的具体工作方法如下:
S1,首先需要将中控单元进行温度设定存储,将室内所需的适宜温度数据设定;
S2,启动工作之后,所述中控单元通过所述温感器传回数据与预先设定温度值进行比对;
S3,如温度等于或高于预设值,则打开三通阀向室内传输热气流同时关闭所述三通阀的上方通口禁止其向上排出热气流;
S4,如温度低于预设值,则关闭所述三通阀的横向通口只向上方通口排出热气流;
S5,或者所述中控单元通过室内温度测量结果自动与所述温感器所测温度进行比对,如果能源单元内温度高于室温则打开所述三通阀的横向通口,如果能源单元内的温度低于室温则关闭所述三通阀的横向通口。
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