CN206739521U - 一种新风系统转换室内循环风的空气净化装置 - Google Patents
一种新风系统转换室内循环风的空气净化装置 Download PDFInfo
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- CN206739521U CN206739521U CN201720520097.8U CN201720520097U CN206739521U CN 206739521 U CN206739521 U CN 206739521U CN 201720520097 U CN201720520097 U CN 201720520097U CN 206739521 U CN206739521 U CN 206739521U
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- air
- fresh air
- wind
- purification
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- 238000004140 cleaning Methods 0.000 title abstract description 16
- 239000002699 waste material Substances 0.000 claims abstract description 46
- 238000000746 purification Methods 0.000 claims abstract description 18
- 238000004887 air purification Methods 0.000 claims abstract description 16
- 238000004659 sterilization and disinfection Methods 0.000 claims abstract description 13
- 238000006243 chemical reaction Methods 0.000 claims abstract description 10
- 230000000249 desinfective Effects 0.000 claims abstract description 10
- 239000000203 mixture Substances 0.000 claims description 4
- 238000007789 sealing Methods 0.000 claims description 4
- 238000009434 installation Methods 0.000 claims description 3
- 238000001914 filtration Methods 0.000 abstract description 5
- 239000000463 material Substances 0.000 abstract description 4
- 206010033307 Overweight Diseases 0.000 abstract description 3
- 235000020825 overweight Nutrition 0.000 abstract description 3
- 238000005265 energy consumption Methods 0.000 abstract description 2
- OKTJSMMVPCPJKN-UHFFFAOYSA-N carbon Chemical compound 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[C] OKTJSMMVPCPJKN-UHFFFAOYSA-N 0.000 description 4
- 230000001954 sterilising Effects 0.000 description 4
- 238000009423 ventilation Methods 0.000 description 3
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- UHOVQNZJYSORNB-UHFFFAOYSA-N benzene Chemical compound 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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
- Y02A—TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
- Y02A50/00—TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE in human health protection, e.g. against extreme weather
- Y02A50/20—Air quality improvement or preservation, e.g. vehicle emission control or emission reduction by using catalytic converters
Abstract
本实用新型的新风系统转换室内循环风空气净化装置,包括风箱体、两方向的切换装置、切换装置和新风、污风进出口止动座;该切换装置具有两个转换位置:位置A:新风系统排出的室内污风与室外补入的新风隔开,风箱体内形成新风与室温污风相向并行风道,污风送出室外,新风经过全热交换器及空气净化杀菌装置送出;位置B:风箱体中间横风向前后隔断,新风被阻断,污风无法通过,经循环送入或吸回新风通过全热交换器及空气净化杀菌装置送出。当在室外空气湿度过大、雾霾过重以及室内外温差大时,实现新风系统转换为室内空气循环净化,拓展了新风空气净化和使用条件的功能,延长了净化过滤辅材的更换周期的问题及为补偿新风温差而增加的能耗。
Description
一种新风系统转换室内循环风的空气净化装置
技术领域
[0001] 本实用新型涉及一种风道转换装置,尤其用于新风系统转换室内循环风的空气净 化装置。
背景技术
[0002] “新风”即新鲜空气。“新风系统”顾名思义就是给居室(建筑)提供清新空气的建筑 机电系统,由中央新风机(或机组,含空气处理功能)、通风管道、风口(进风和回风)三部分 组成。它将室内的污浊空气经热回收后(节能)排向室外,同时,室外的新鲜空气吸入后经空 气净化装置处理、高效换热器温度平衡,然后被持续均匀地送入室内。新风系统可以将室外 空气经过高效过滤和活性炭的有效吸附后,向室内输送新鲜洁净的空气。不管是室内的甲 醛、苯、甲苯、二甲苯、氡气,还是我们人体呼出的二氧化碳都需要经常的通风换气,新风系 统实现了在雾霾天一边开着进气扇往屋里灌净化过的新鲜空气,一边用排气扇将屋里的废 气排出,相当于在晴朗蓝天的天气打开窗户进行通风室内外的空气置换。
[0003] 空气净化器是风机、多重过滤净化、等离子杀菌以及控制、显示等集成装置,或体 积小、移动方便的一体机,或挂在墙上、吊在棚顶的固定式组合机型。其功能是通过室内循 环风净化空气,在不开窗的情况下,可以净化室内空气中烟雾、颗粒物、粉尘、甲醛以及一些 有害化合物等。
[0004]目前,新风系统与空气净化机同具空气净化的功能,新风系统是由新风通风机、空 气净化装置(仅是空气净化机的净化单元部件)以及换热单元组合,配置风管路、进出风口 及控制系统形成的系统。二者空气净化装置各有利弊。其中,新风系统:当室外空气湿度过 大,如下大雨天气,空气湿度较大,引入室内的新风带着雨雾通过活性炭、HEPA等过滤材料 时,因其受潮严重而失效;其静电除尘杀菌单元因空气湿度太大引起电场的绝缘介质变化, 放电、进一步可能形成短路、电极损坏以及造成不安全因素;当雾霾过重天气时,新风系统 工作使得净化单元吸附的污染物高倍增加,过滤材料快速退化,需要进行更换。当严冬季 节,特别是我国北部、中部地区室内外温差多达三、四十度,全热交换器预热仅是有限升温, 大量冷风进入室内引起室温大幅降低,为此需要加热辅助维持室温,由此带来能源浪费。当 酷热夏季,特别是我国南部、中部地区阳光下室外空气温度高达三、四十度,全热交换器仅 是有限降低新风温度,大量热风进入室内,为保持室内温度,需要加大空调负荷,由此带来 能源浪费,甚至空调降温难抵涌入的热风升温。因此,需要对现有新风空气净化设备进行改 进和完善。
发明内容
[0005]鉴于上述现状,本实用新型提供了一种新风系统转换室内循环风的空气净化装 置,通过简单、低廉的风管道转换装置,实现新风与循环风转换用,节能减耗、操作灵活,花 一台新风系统的钱,一键操作,即可拓展成两套功能变成了室内循环风空气净化装置。
[0006]本实用新型的技术解决方案是,该装置包括风箱体,沿风箱体内的两个对角位置 固定设有新风进出口止动座和污风进出口止动座,及位于对角位置的新风止动座和污风进 出口止动座之间设有两个转动方向的切换装置,通过切换装置转换新风进出口止动座或污 风进出口止动座的打开或关闭;该切换装置具有两个转换位置:
[0007]位置A:新风系统排出的室内污风与室外补入的新风隔开,风箱体内形成新风与室 温污风相向并行风道,污风送出室外,新风经过风箱体得到一定的温度平衡后,进入全热交 换器及空气净化杀菌装置; ^
[0008] 位置B:风箱体中间横风向前后隔断,新风被阻断,污风无法通过,通过短路循环送 入或吸回新风通过全热交换器及空气净化杀菌装置。
[0009] 本新型中,所述新风进出口止动座和污风进出口止动座为弯折的直角形结构体, 其上的进出口止动座的周边设有进出风口和密封垫。
[0010] 进一步地,所述切换装置包括垂直设置的风门阀板,该风门阀板通过固定座与转 轴连接,该转轴安装在风箱体的定位座上。
[0011]进一步地,所述进出风口,包括新风进出口和污风进出风口,该新风进出口和污风 进出风口分别对应于新风进出口止动座和污气进出口止动座。
[0012] 进一步地,所述切换装置可将风箱体内部转换成两个方向的空间腔部分,每一方 向的空间腔对应风箱体上的进出风口。
[0013] 进一步地,上述新风全热交换器和空气净化杀菌装置,可以是一体集成化集成,也 可以设计成分体独立单元后组合,且安装位置不分前后顺序。
[0014] 进一步地,所述新风全热交换器,可以是配一台吸风机强制引入新风,污染的空气 因室内正压自然排除;也可配二台风机,一台强制吸入新风风机,一台强制送出室内污染的 空气。
[0015] 本实用新型的有益效果是:通过上述设备完成新风系统装置切换为循环风空气净 化的方式,由一组空气净化单元既可完成新风空气净化,还可完成室内循环风空气净化功 能。无论天气怎样,任意时刻都可以净化室内空气。可根据天气和室内污染程度自行优选室 内空气净化及优化运行方式,实现节能减耗,经济、安全运行。另外,将现行新风机与空气净 化器二者合一,使得在室外雾霾严重或室内外温差过大条件下,开启室内循环风净化模式 也能实施室内空气净化的需求。同时,因为可以大大提升滤芯有效的运行周期,节省费用很 可观。该装置通过控制系统(多功能集成控制开关或遥控开关)一键操作,即可将新风系统 转换为循环风空气净化器(空气净化装置、全热交换装置性能略),将是很受用户欢迎的空 气净化创新方案。
附图说明
[0016] 图1是本新型的结构示意图;
[0017] 图2图1的A-A剖视图;
[0018] 图3是新风工作模式的参考示意图;
[0019]图4是循环风空气净化工作模式参考示意图。
具体实施方式
[0020]下面将结合附图实施例对本实用新型作进一步描述。
[0021]参见图1至图2所示的一种新风系统转换室内循环风的空气净化装置,该装置包括 风箱体1,该风箱体1上分别设有新风进出口 9a和污风进出风口 %,沿风箱体1内的两个对角 位置固定设有两组新风进出口止动座8a和污风进出口止动座8b,位于新风进出口止动座8a 和污风进出口止动座8b的周边设有密封垫。上述中每一组新风进出口止动座8a和污风进出 口止动座8b上具有两个方向的止动座。上述的新风进出口 9a和污风进出风口 %分别对应于 新风进出口止动座8a和污风进出口止动座8b。在位于对角位置的新风止动座8a和污风进出 口止动座Sb之间设置具有两个转动方向的切换装置,通过切换装置转换新风进出口止动座 Sa或污风进出口止动座8b的打开或关闭。在本实施例中,所述切换装置,包括垂直设置的风 门阀板5,该风门阀板5通过固定座4与转轴3连接,该转轴3安装在风箱体的定位座2上。上述 风门阀板5通过铰接推杆支架6与安装在新风进出口止动座8a—侧的电动推杆7连接。因此, 通过切换装置可将风箱体1内部转换成两个方向的空间腔部分,每一方向的空间腔对应风 箱体1上的新风进出口 9a和污风进出风口 9b。具体说上述的切换装置中的门阀板5转换位置 包括位置A和位置B:所述切换装置处于位置A时(风门阀板5常开),风箱体1形成新风与室温 污风相向并行风道,污风排出室外,新风系统排出的室内污风与室外补入的新风隔开,新风 经过风箱体1到一定的温度平衡后,进入全热交换器及空气净化杀菌装置送入新风出风口 9a;处于位置B时(风门阀板5关闭),新风进出口 9a中的入口与污风进出风口 9b中的出口关 闭,新风被阻断,污风无法通过,利用短路循环送入或吸回新风通过全热交换器及空气净化 杀菌装置,室内风循环进行空气净化。
[0022] 上述中的新风进出口止动座8a和污风进出口止动座8b设计成窄边圈形,减少空气 阻力,通过其上设有的密封垫,既可止动风门阀板5,又为风门密封。
[0023]另外,本新型考虑到在室外空气湿度过大、雾霾过重和室内外温差过大的情况时, 用新风系统空气净化装置实现室内空气净化的效果,拓展了新风空气净化装置使用条件、 功能,避免了为补偿新风温差而增加的能耗,延长了过滤辅材更换周期,既节能又降耗。 [0024]上述系统配套的新风吸风机转速可略高于排污风机转速,使室内处于空气正压, 可有效防止门窗缝隙进灰。
[0025]上述中,所提及的新风全热交换器和空气净化杀菌装置,可以是一体集成化集成, 也可以设计成分体独立单元后组合,且安装位置不分前后顺序。
[0026] 上述中,所提及的新风全热交换器,可以是配一台吸风机强制引入新风,污染的空 气因室内正压自然排除;也可配二台风机,一台强制吸入新风风机,一台强制送出室内污染 的空气。
[0027]上述中提及的新风热交换器、新风风机和净化装置均为配套的已有设备,故省略 各结构及功能的表述。
[0028]图3给出了新风工作模式参考示意图。当切换装置1处于位置A:控制新风与室内循 环风转换时,新风系统正常工作,此时切换装置中的风门阀板一侧顺向常开,另一侧关闭, 入白色箭头所示的新风通过新风进口进入,过新风进出口止动座由新风出口进入空气净化 杀菌装置10及全热交换器11进入新风机12,通过新风机I2将新风送入室内;而污风经过管 道通过全热交换器11及排污风机I3进入切换装置1,通过打开一侧的污气进出口止动座经 出口排出污风,如此循环处理。
[0029]图4给出了循环风空气净化工作模式的参考示意图。当切换装置1处于位置B:污风 系统正常工作,关闭污风进出口止动座及其中一侧的新风进出口止动座,打开另一侧的新 风进出口止动座与新风出口导通,入黑色箭头所示的污风通过管道进入全热交换器11、排 污风机13经新风出口进入空气净化杀菌装置10及全热交换器11进入新风机12,通过新风机 12将新风送入室内如此循环处理。
[0030]以上所述仅是本实用新型的较佳实施案例而己,并非对本实用新型作任何形式上 的限制,虽然本实用新型己以较佳实施案例揭露如上述。然而并非用以限定本实用新型,任 何熟悉本专利的技术人员在不脱离本实用新型技术方案范围内,当可利用上述启示的技术 内容作出相应变动或修饰为等同变化的等效实施案例,但凡是未脱离本实用新型技术方案 的内容,依据本实用新型的技术实质对以上实施案例所作的任何简单修改、等同变化与修 饰,均仍属于本实用新型方案的范围内。
Claims (7)
1. 新风系统转换室内循环风空气净化的装置,其特征在于,该装置包括风箱体(1),沿 风箱体内的两个对角位置固定设有新风进出口止动座(8a)和污风进出口止动座(8b),及位 于对角位置的新风止动座和污风进出口止动座之间设有两个转动方向的切换装置,通过切 换装置转换新风进出口止动座(8a)或污风进出口止动座(8b)的打开或关闭;该切换装置具 有两个转换位置: 位置A:新风系统排出的室内污风与室外补入的新风隔开,风箱体内形成新风与室温污 风相向并行风道,污风送出室外,新风经过风箱体得到一定的温度平衡后,进入全热交换器 (11)及空气净化杀菌装置(10); 位置B:风箱体中间横风向前后隔断,新风被阻断,污风无法通过,通过短路循环送入或 吸回新风通过全热交换器(11)及空气净化杀菌装置(10)。
2. 根据权利要求1所述的新风系统转换室内循环风空气净化的装置,其特征在于,新风 进出口止动座(8a)风进出口止动座(8b)折的直角形结构体,其上的进出口止动座的周边设 有进出风口和密封垫。
3. 根据权利要求1所述的新风系统转换室内循环风空气净化的装置,其特征在于,切换 装置包括垂直设置的风门阀板(5),该风门阀板(5)通过固定座(4)与转轴(3)连接,该转轴 (3)安装在风箱体的定位座(2)上。
4. 根据权利要求1所述的新风系统转换室内循环风空气净化的装置,其特征在于,上述 风箱体1包括新风进出口(9a)和污风进出风口(%),该新风进出口(9a)和污风进出风口 (9b)分别对应于新风进出口止动座(8a)和污气进出口止动座(8b)。
5. 根据权利要求1所述的新风系统转换室内循环风空气净化的装置,其特征在于,上述 切换装置可将风箱体(1)内部转换成两个方向的空间腔部分,每一方向的空间腔对应风箱 体上的新风进出口(9a)和污风进出风口(%)。
6. 根据权利要求1所述的新风系统转换室内循环风空气净化的装置,其特征在于,上述 新风全热交换器(11)和空气净化杀菌装置(10),可以是一体集成化集成,也可以设计成分 体独立单元后组合,且安装位置不分前后顺序。
7.根据权利要求1所述的新风系统转换室内循环风空气净化的装置,其特征在于,上述 新风全热交换器(11),可以是配一台吸风机强制引入新风,污染的空气因室内正压自然排 除;也可配二台风机,一台强制吸入新风风机,一台强制送出室内污染的空气。
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CN111964184A (zh) * | 2020-09-03 | 2020-11-20 | 新乡市中心医院(新乡中原医院管理中心) | 医院环境气体消毒通风设备 |
CN111964184B (zh) * | 2020-09-03 | 2021-11-12 | 新乡市中心医院(新乡中原医院管理中心) | 医院环境气体消毒通风设备 |
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