CN201014541Y - 数控环保节能锅炉 - Google Patents
数控环保节能锅炉 Download PDFInfo
- Publication number
- CN201014541Y CN201014541Y CNU2007201394434U CN200720139443U CN201014541Y CN 201014541 Y CN201014541 Y CN 201014541Y CN U2007201394434 U CNU2007201394434 U CN U2007201394434U CN 200720139443 U CN200720139443 U CN 200720139443U CN 201014541 Y CN201014541 Y CN 201014541Y
- Authority
- CN
- China
- Prior art keywords
- water jacket
- chamber
- smoke
- water
- boiler
- Prior art date
Links
- 241000005139 Lycium andersonii Species 0.000 claims abstract description 52
- 239000000779 smoke Substances 0.000 claims abstract description 32
- 238000005192 partition Methods 0.000 claims abstract description 21
- 238000002485 combustion reactions Methods 0.000 claims abstract description 15
- 239000011901 water Substances 0.000 claims abstract description 14
- 238000007789 sealing Methods 0.000 claims abstract description 8
- 238000004140 cleaning Methods 0.000 claims description 3
- 238000010521 absorption reactions Methods 0.000 abstract 2
- OKTJSMMVPCPJKN-UHFFFAOYSA-N carbon Chemical compound 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[C] OKTJSMMVPCPJKN-UHFFFAOYSA-N 0.000 description 12
- 239000003245 coal Substances 0.000 description 10
- 239000003570 air Substances 0.000 description 5
- UGFAIRIUMAVXCW-UHFFFAOYSA-N carbon monoxide Chemical compound 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Abstract
Description
数控环保节能锅炉
技术领域
本实用新型属于民用燃煤锅炉结构的改进,特别是数控环保节能锅炉。 背景技术
现有的民用燃煤锅炉多由水套炉体、炉膛及烟囱构成,水套炉体能够充分 利用煤炭燃烧产生的热量加热各处水套内的水给室内的暖气片供暖,这些煤炉 结构简单实用,热能利用率比传统的燃煤锅炉高一些。其不足之处是这种锅炉 在使用时,炉膛内的煤炭燃烧产生的火焰仍为直接向上升腾,火焰流动路线也 较为平直,热量流失仍然较多,火焰燃烧温度较低,热能利用率有待提高。
实用新型内容
本实用新型的目的在于提供一种数控环保节能锅炉,其结构简单、合理, 热能利用率高,烟尘排放量低,易于推广。
本实用新型的目的是这样实现的: 一种数控环保节能锅炉,包括具有进、 出水口的水套炉体,水套炉体内的中部竖直设置着将水套炉体内部空间分隔成
燃烧室与吸热室的水套隔墙;燃烧室上部的炉体壁上分别设置着密封炉门及鼓 风口,燃烧室中部设置着炉膛,炉膛底部设置着炉篦,炉篦下方为返火腔;吸 热室的上部和下部分别设置着水平隔板,两水平隔板与水套炉体内壁及水套隔 墙壁之间构成封闭的储水腔,两隔板之间竖直均布连通着烟火管,上水平隔板 与水套炉体顶面之间构成返烟腔,下水平隔板底面下竖直设置着将下水平隔板 下方空间分隔成出烟腔及进烟腔的挡烟板;水套隔墙的底部设置着连通进烟腔 与返火腔的烟道,在出烟腔的水套炉体壁上设置着出烟口。
本实用新型使用时,通过密封炉门向炉膛内投入煤炭燃烧,由连接有鼓风 机的鼓风口向炉膛内吹风,使煤炭燃烧产生的火焰向下喷入返火腔,再通过水 套隔墙底部的烟道进入进烟腔,进而由烟火管进入上水平隔板与水套炉体顶面 之间构成的返烟腔内,最后又通过烟火管向下进入挡烟板另 一侧的出烟腔内, 由出烟口排出。本实用新型釆用正压、封闭式配风反向燃烧原理,使燃煤中的 挥发成份充分转化后进行气化燃烧,具有启动快,燃烧强度髙的优点,其中心 火焰温度可达120(TC以上。而采用多回程烟道绕动结构,延长了烟气流动路线,
提高了水套炉体对烟气中热能的吸收能力,较传统锅炉的换热效率提高了 40— 50%,实现了由出烟口处排出的烟气余热仅为20(TC左右的低温排放,极大地降
低了热量的流失,提高了热能利用率。
经过试验,国家标准I类地区烟尘排放要求为80亳克/立方米,本实用新 型实际烟尘排放量为58亳克/立方米,比国家标准烟尘排放低22亳克/立方米;
国家标准的锅炉热效率为60%,本实用新型的实际热效率为80. 4%,比国家标准 热效率提高了 20.4%。本实用新型还可以安装微电脑控制系统用以对鼓风机运行 状态进行调节,自动调节锅炉内煤炭燃烧的快慢,调节锅炉运行状态,这样在 正常运行中就不需司炉工长期坚守看管,从而减轻司炉工的劳动强度。
本实用新型结构简单合理,热能利用率高,烟尘排放量低,适用于家庭、 工厂、学校、公寓、洗浴中心、宾馆等场所,易于推广。
附图说明
下面将结合附图对本实用新型作进一步说明。 图1为本实用新型的主视剖面结构示意图; 图2为本实用新型的俯视结构示意图; 图3为图1中的A—A剖面结构示意图。 具体实施方式
一种数控环保节能锅炉,如图l、图2、图3所示,包括具有进、出水口的 水套炉体l,水套炉体l为长方体形或正方体形,还可以为前高后低形或前低后
高形。水套炉体1内的中部竖直设置着将水套炉体内部空间分隔成燃烧室6与 吸热室的水套隔墙;燃烧室6上部的炉体壁上分别设置着密封炉门8及鼓风口 7。
如图2所示,在燃烧室6角部的水套炉体l内竖直设置着进风管16,鼓风 口 7安装在进风管16上,进风管16连接着鼓风机。在本实用新型炉体上安装 微电脑控制系统以及相应的温度传感器可以控制鼓风机的运行状态,从而控制 煤炭燃烧速度及燃烧温度,提高锅炉的自动化运行水平。
燃烧室6中部设置着由耐火砖构成的炉膛5,炉膛5底部设置着炉篦9,炉 篦9所在的平面为倾斜平面,炉篦9由相互间隔布置的水管构成,各水管的两 端分别与水套炉体壁以及水套隔墙相连通。倾斜布置的炉篦9有利于提高水套 炉体内水循环的速度,同时有利于清理煤炭燃烧产生的炉渣。炉篦9下方为返 火腔10。由鼓风口 7吹入炉膛5内的气流将炉膛内煤炭燃烧产生的高温火焰向 下吹入返火腔10内。如图1所示,在炉膛5壁上以及返火腔10内也分别设置 着鼓风口。这样设置多个鼓风口更能够有力地吹动炉膛5内的高温火焰,从而 控制高温火焰的流动方向。
如图1所示,吸热室的上部和下部分别设置着水平隔板,两水平隔板与水 套炉体内壁及水套隔墙壁之间构成封闭的储水腔,两隔板之间竖直均布连通着 烟火管4,上水平隔板与水套炉体顶面之间构成返烟腔3,下水平隔板底面下竖 直设置着将下水平隔板下方空间分隔成出烟腔及进烟腔12的挡烟板13;水套隔 墙的底部设置着连通进烟腔12与返火腔10的烟道11,在出烟腔的水套炉体壁 上设置着出烟口 14。
由返火腔10经烟道11进入进烟腔12的高温烟气流入烟火管4内,对储水
腔内的水进行加热,从而充分吸收烟气中的热量,提高热能利用率。
如图l、图3所示,炉膛5呈立置的喇叭形,炉膛5的顶面口径大于其底面 的口径。采用这种结构的炉膛5能够提高高温火焰向下喷入返火腔10内的速度。
在返烟腔3上方的水套炉体1顶面上设置着上清灰口 2,用以清理烟火管4 内的灰烬。在出烟腔的水套炉体壁上设置着下清灰口 15,用以清理出烟腔内的 灰烬。
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Cited By (6)
Publication number | Priority date | Publication date | Assignee | Title |
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CN103471137A (zh) * | 2013-09-06 | 2013-12-25 | 梁可竹 | 一种多回程反向燃烧采暖炉 |
CN104791996A (zh) * | 2015-05-04 | 2015-07-22 | 李发军 | 一种新型高效节能无压锅炉 |
CN104964443A (zh) * | 2015-07-01 | 2015-10-07 | 魏万军 | 一种热风炉 |
CN105090933A (zh) * | 2015-07-27 | 2015-11-25 | 佛山市南海区松岗华然五金厂 | 一种生物质燃烧器的放射状二次裂解燃烧室 |
CN105276799A (zh) * | 2014-06-23 | 2016-01-27 | 天津市红鼎数控锅炉制造有限公司 | 设有备份进水管道的数控锅炉 |
CN105299885A (zh) * | 2014-06-23 | 2016-02-03 | 天津市红鼎数控锅炉制造有限公司 | 设有除垢剂注入机构的数控锅炉 |
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Cited By (7)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103471137A (zh) * | 2013-09-06 | 2013-12-25 | 梁可竹 | 一种多回程反向燃烧采暖炉 |
CN105276799A (zh) * | 2014-06-23 | 2016-01-27 | 天津市红鼎数控锅炉制造有限公司 | 设有备份进水管道的数控锅炉 |
CN105299885A (zh) * | 2014-06-23 | 2016-02-03 | 天津市红鼎数控锅炉制造有限公司 | 设有除垢剂注入机构的数控锅炉 |
CN104791996A (zh) * | 2015-05-04 | 2015-07-22 | 李发军 | 一种新型高效节能无压锅炉 |
CN104791996B (zh) * | 2015-05-04 | 2017-12-26 | 李发军 | 一种新型高效节能无压锅炉 |
CN104964443A (zh) * | 2015-07-01 | 2015-10-07 | 魏万军 | 一种热风炉 |
CN105090933A (zh) * | 2015-07-27 | 2015-11-25 | 佛山市南海区松岗华然五金厂 | 一种生物质燃烧器的放射状二次裂解燃烧室 |
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