CN205119873U - 一种高温烟气复合型冷却塔 - Google Patents
一种高温烟气复合型冷却塔 Download PDFInfo
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- CN205119873U CN205119873U CN201520965928.3U CN201520965928U CN205119873U CN 205119873 U CN205119873 U CN 205119873U CN 201520965928 U CN201520965928 U CN 201520965928U CN 205119873 U CN205119873 U CN 205119873U
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- flue gas
- cooling
- tower body
- blower fan
- pipe
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- 238000001816 cooling Methods 0.000 title claims abstract description 92
- UGFAIRIUMAVXCW-UHFFFAOYSA-N carbon monoxide Chemical compound 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- 150000001875 compounds Chemical class 0.000 title abstract 3
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Classifications
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E10/00—Energy generation through renewable energy sources
- Y02E10/50—Photovoltaic [PV] energy
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E70/00—Other energy conversion or management systems reducing GHG emissions
- Y02E70/30—Systems combining energy storage with energy generation of non-fossil origin
Abstract
本实用新型公开了一种高温烟气复合型冷却塔,包括塔体,塔体上侧设有四个风机模块,每个风机模块均由一个独立的小型风机支撑支架、一台小型风机和一台电机组成一体化结构,小型风机的叶轮直接固定在相对应电机的输出轴上,本实用新型高温烟气复合型冷却塔,采用风冷和水冷配合对烟气冷却管道中流动的高温烟气进行冷却,冷却效果好、效率高,蛇形排布的烟气冷却管道使得烟气在塔体内部流动时间更长,能够受到充分的冷却,采用四个风机模块同时工作进行风冷,有效的提高了风冷效果,且维修费用低、工作噪声小,便于安装和运输,可对冷却水进行冷却,保证了水冷效果,另外由太阳能发电转轴进行供电,节约了能源。
Description
技术领域
[0001]本实用新型涉及一种冷却塔,具体是一种高温烟气复合型冷却塔。
背景技术
[0002]冷却塔是用水作为循环冷却剂,从一系统中吸收热量排放至大气中,以降低水温的装置;其冷是利用水与空气流动接触后进行冷热交换产生蒸汽,蒸汽挥发带走热量达到蒸发散热、对流传热和辐射传热等原理来散去工业上或制冷空调中产生的余热来降低水温的蒸发散热装置,以保证系统的正常运行,装置一般为桶状,故名为冷却塔。冷却塔是集空气动力学、热力学、流体学、化学、生物化学、材料学、静、动态结构力学,加工技术等多种学科为一体的综合产物。水质为多变量的函数,冷却更是多因素,多变量与多效应综合的过程。在工业生产中也常常需要用冷却塔对高温烟气进行冷却,现有的烟气冷却塔冷却效果不好、效率不高,冷却不充分,难以满足生产要求,且现有的冷却塔耗能大,使用和维护成本尚ο
实用新型内容
[0003]本实用新型的目的在于提供一种高温烟气复合型冷却塔,以解决上述背景技术中提出的问题。
[0004]为实现上述目的,本实用新型提供如下技术方案:
[0005] —种高温烟气复合型冷却塔,包括塔体,所述塔体上侧设有四个风机模块,每个风机模块均由一个独立的小型风机支撑支架、一台小型风机和一台电机组成一体化结构,小型风机的叶轮直接固定在相对应电机的输出轴上,四个风机模块在塔体顶部呈2X2矩阵状排列,每两个风机模块之间都设有检查通道,在风机模块上侧设有外罩,风机模块的上侧设有太阳能发电装置,太阳能发电装置包括外壳、反光镜、曲面电池板、背板、平面电池板、蜂窝状散热金属层、散热管和蓄电池,反光镜设置在蜂窝状散热金属层的内部,在反光镜的正上方对应设有弧形钢化玻璃板,在反光镜的中心设有曲面电池板,曲面电池板上方对应设有背板,背板的上方设有平面电池板,在曲面电池板和背板之间设有散热管,在外壳内部蜂窝状散热金属层的下侧还设有蓄电池,在塔体内部中段设有烟气冷却管道,烟气冷却管道底端与烟气进气管连接,烟气冷却管道顶端与烟气出气管连接,所述塔体内部下侧设有蓄水槽,塔体左侧竖直设有循环水管,循环水管底端与蓄水槽内部连接,循环水管上设有循环栗,循环水管顶端与塔体左侧内壁上设置的喷淋管连接,喷淋管右侧壁上均匀设置有若干个喷头,在蓄水槽内部设有蛇形冷却管,蛇形冷却管底端与通过连接管与液氮罐连接,连接管上设有电磁阀,在蓄水槽底部设有温度传感器,温度传感器通过控制器与电磁阀连接。
[0006]作为本实用新型进一步的方案:所述反光镜的形状为半圆形。
[0007]作为本实用新型进一步的方案:所述烟气冷却管道在塔体内部呈蛇形排布。
[0008]作为本实用新型再进一步的方案:所述喷淋管为螺旋形管道。
[0009]与现有技术相比,本实用新型的有益效果是:冷却塔工作时,高温烟气由烟气进气管进入烟气冷却管道中,此时四个风机模块同时工作往塔体内部鼓入冷风对烟气进行冷却处理,由于烟气冷却管道呈蛇形排布,使得烟气在塔体内部流动时间更长,能够受到充分的的冷却,有效的提高了冷却效果和效率,多个风机模块呈矩阵排列后,使得风机吸风面大大增加,气流塔体内部分布均匀度提高,有利于提高冷却效率,风机模块的风机叶轮直接安装在与电机转轴上,取消了皮带或变速齿轮等构件风机与电机间无其它传动机构,有利于减小噪声,减少易损件,且风机模块重量小,便于安装和检修,维护费用低,另外单个风机模块风量小,有利于降低冷却塔的噪声,太阳能发电装置的设置能够使冷却塔自给自足,不需要考虑用电的问题,并且使用太阳能电池,节约了市电,做到了节能环保,蜂窝状散热金属层和散热管配合进行散热,保护发电设备,使得发电装置具有更长的寿命;循环栗将蓄水箱中的冷却水循环抽入喷淋管中由喷头喷出对烟气进行水冷,配合风冷显著的提高了冷却效果和效率,另外温度传感器对蓄水箱中的水温进行检测,当水温过高时,控制器控制电磁阀打开,液氮进入蛇形冷却管中对冷却水进行冷却降温,避免了循环水冷后冷却水温度过高赢水冷的现象,保证了水冷的效果。
附图说明
[0010]图1为高温烟气复合型冷却塔的结构示意图。
[0011 ]图2为高温烟气复合型冷却塔中风机模块的结构示意图。
[0012]图3为高温烟气复合型冷却塔中太阳能发电装置的结构示意图。
具体实施方式
[0013]下面将结合本实用新型实施例中的附图,对本实用新型实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本实用新型一部分实施例,而不是全部的实施例。基于本实用新型中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本实用新型保护的范围。
[0014]请参阅图1-3,本实用新型实施例中,一种高温烟气复合型冷却塔,包括塔体1,所述塔体1上侧设有四个风机模块2,每个风机模块2均由一个独立的小型风机支撑支架21、一台小型风机22和一台电机23组成一体化结构,小型风机22的叶轮直接固定在相对应电机23的输出轴上,四个风机模块2在塔体1顶部呈2 X 2矩阵状排列,每两个风机模块2之间都设有检查通道3,在风机模块2上侧设有外罩,风机模块2的上侧设有太阳能发电装置4,太阳能发电装置4包括外壳41、反光镜43、曲面电池板44、背板45、平面电池板46、蜂窝状散热金属层47、散热管48和蓄电池49,所述反光镜43的形状为半圆形,反光镜43设置在蜂窝状散热金属层47的内部,在反光镜43的正上方对应设有弧形钢化玻璃板42,在反光镜43的中心设有曲面电池板44,曲面电池板44上方对应设有背板45,背板45的上方设有平面电池板46,在曲面电池板44和背板45之间设有散热管48,在外壳内部蜂窝状散热金属层47的下侧还设有蓄电池49,在塔体1内部中段设有烟气冷却管道5,所述烟气冷却管道5在塔体1内部呈蛇形排布,烟气冷却管道5底端与烟气进气管6连接,烟气冷却管道5顶端与烟气出气管7连接,冷却塔工作时,高温烟气由烟气进气管6进入烟气冷却管道5中,此时四个风机模块2同时工作往塔体1内部鼓入冷风对烟气进行冷却处理,由于烟气冷却管道5呈蛇形排布,使得烟气在塔体1内部流动时间更长,能够受到充分的的冷却,有效的提高了冷却效果和效率,多个风机模块呈矩阵排列后,使得风机吸风面大大增加,气流塔体1内部分布均匀度提高,有利于提高冷却效率,风机模块2的风机叶轮直接安装在与电机转轴上,取消了皮带或变速齿轮等构件风机与电机间无其它传动机构,有利于减小噪声,减少易损件,且风机模块2重量小,便于安装和检修,维护费用低,另外单个风机模块2风量小,有利于降低冷却塔的噪声,通过反光镜43将太阳光聚集到曲面电池板44上,以提高太阳能发电装置4利用太阳能的效率,弧形钢化玻璃板42在保证良好透光的同时实现了对太阳能发点装置4的保护,而弧形钢化玻璃板42上聚集的太阳光被聚集在平面电池板46上进行发电,太阳能发电装置4的设置能够使冷却塔自给自足,不需要考虑用电的问题,并且使用太阳能电池,节约了市电,做到了节能环保,蜂窝状散热金属层47和散热管48配合进行散热,保护发电设备,使得发电装置具有更长的寿命;所述塔体1内部下侧设有蓄水槽8,塔体1左侧竖直设有循环水管9,循环水管9底端与蓄水槽8内部连接,循环水管9上设有循环栗10,循环水管9顶端与塔体1左侧内壁上设置的喷淋管11连接,所述喷淋管11为螺旋形管道,喷淋管11右侧壁上均匀设置有若干个喷头12,在蓄水槽8内部设有蛇形冷却管13,蛇形冷却管13底端与通过连接管与液氮罐14连接,连接管上设有电磁阀15,在蓄水槽8底部设有温度传感器16,温度传感器17通过控制器17与电磁阀15连接,冷却塔工作时,循环栗10将蓄水箱8中的冷却水循环抽入喷淋管11中由喷头12喷出对烟气进行水冷,配合风冷显著的提高了冷却效果和效率,另外温度传感器16对蓄水箱8中的水温进行检测,当水温过高时,控制器17控制电磁阀15打开,液氮进入蛇形冷却管13中对冷却水进行冷却降温,避免了循环水冷后冷却水温度过高赢水冷的现象,保证了水冷的效果;本实用新型高温烟气复合型冷却塔,采用风冷和水冷配合对烟气冷却管道中流动的高温烟气进行冷却,冷却效果好、效率高,蛇形排布的烟气冷却管道使得烟气在塔体内部流动时间更长,能够受到充分的的冷却,采用四个风机模块同时工作进行风冷,有效的提高了风冷效果,且维修费用低、工作噪声小,便于安装和运输,另外可对冷却水进行冷却,保证了水冷效果。
[0015]本实用新型的工作原理是:冷却塔工作时,高温烟气由烟气进气管6进入烟气冷却管道5中,此时四个风机模块2同时工作往塔体1内部鼓入冷风对烟气进行冷却处理,由于烟气冷却管道5呈蛇形排布,使得烟气在塔体1内部流动时间更长,能够受到充分的的冷却,有效的提高了冷却效果和效率,多个风机模块呈矩阵排列后,使得风机吸风面大大增加,气流塔体1内部分布均匀度提高,有利于提高冷却效率,风机模块2的风机叶轮直接安装在与电机转轴上,取消了皮带或变速齿轮等构件风机与电机间无其它传动机构,有利于减小噪声,减少易损件,且风机模块2重量小,便于安装和检修,维护费用低,另外单个风机模块2风量小,有利于降低冷却塔的噪声,通过反光镜43将太阳光聚集到曲面电池板44上,以提高太阳能发电装置4利用太阳能的效率,弧形钢化玻璃板42在保证良好透光的同时实现了对太阳能发点装置4的保护,而弧形钢化玻璃板42上聚集的太阳光被聚集在平面电池板46上进行发电,太阳能发电装置4的设置能够使冷却塔自给自足,不需要考虑用电的问题,并且使用太阳能电池,节约了市电,做到了节能环保,蜂窝状散热金属层47和散热管48配合进行散热,保护发电设备,使得发电装置具有更长的寿命;循环栗10将蓄水箱8中的冷却水循环抽入喷淋管11中由喷头12喷出对烟气进行水冷,配合风冷显著的提高了冷却效果和效率,另外温度传感器16对蓄水箱8中的水温进行检测,当水温过高时,控制器17控制电磁阀15打开,液氮进入蛇形冷却管13中对冷却水进行冷却降温,避免了循环水冷后冷却水温度过高赢水冷的现象,保证了水冷的效果。
[0016]对于本领域技术人员而言,显然本实用新型不限于上述示范性实施例的细节,而且在不背离本实用新型的精神或基本特征的情况下,能够以其他的具体形式实现本实用新型。因此,无论从哪一点来看,均应将实施例看作是示范性的,而且是非限制性的,本实用新型的范围由所附权利要求而不是上述说明限定,因此旨在将落在权利要求的等同要件的含义和范围内的所有变化囊括在本实用新型内。不应将权利要求中的任何附图标记视为限制所涉及的权利要求。
[0017]此外,应当理解,虽然本说明书按照实施方式加以描述,但并非每个实施方式仅包含一个独立的技术方案,说明书的这种叙述方式仅仅是为清楚起见,本领域技术人员应当将说明书作为一个整体,各实施例中的技术方案也可以经适当组合,形成本领域技术人员可以理解的其他实施方式。
Claims (4)
1.一种高温烟气复合型冷却塔,包括塔体,其特征在于,所述塔体上侧设有四个风机模块,每个风机模块均由一个独立的小型风机支撑支架、一台小型风机和一台电机组成一体化结构,小型风机的叶轮直接固定在相对应电机的输出轴上,四个风机模块在塔体顶部呈2X 2矩阵状排列,每两个风机模块之间都设有检查通道,在风机模块上侧设有外罩,风机模块的上侧设有太阳能发电装置,太阳能发电装置包括外壳、反光镜、曲面电池板、背板、平面电池板、蜂窝状散热金属层、散热管和蓄电池,反光镜设置在蜂窝状散热金属层的内部,在反光镜的正上方对应设有弧形钢化玻璃板,在反光镜的中心设有曲面电池板,曲面电池板上方对应设有背板,背板的上方设有平面电池板,在曲面电池板和背板之间设有散热管,在外壳内部蜂窝状散热金属层的下侧还设有蓄电池,在塔体内部中段设有烟气冷却管道,烟气冷却管道底端与烟气进气管连接,烟气冷却管道顶端与烟气出气管连接,所述塔体内部下侧设有蓄水槽,塔体左侧竖直设有循环水管,循环水管底端与蓄水槽内部连接,循环水管上设有循环栗,循环水管顶端与塔体左侧内壁上设置的喷淋管连接,喷淋管右侧壁上均匀设置有若干个喷头,在蓄水槽内部设有蛇形冷却管,蛇形冷却管底端与通过连接管与液氮罐连接,连接管上设有电磁阀,在蓄水槽底部设有温度传感器,温度传感器通过控制器与电磁阀连接。
2.根据权利要求1所述的高温烟气复合型冷却塔,其特征在于,所述反光镜的形状为半圆形。
3.根据权利要求1所述的高温烟气复合型冷却塔,其特征在于,所述烟气冷却管道在塔体内部呈蛇形排布。
4.根据权利要求1所述的高温烟气复合型冷却塔,其特征在于,所述喷淋管为螺旋形管道。
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CN111076569A (zh) * | 2018-10-19 | 2020-04-28 | 济南蓝辰能源技术有限公司 | 一种Co2气体冷却用闭式冷却塔校核方法 |
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CN111076569A (zh) * | 2018-10-19 | 2020-04-28 | 济南蓝辰能源技术有限公司 | 一种Co2气体冷却用闭式冷却塔校核方法 |
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