CN106765840A - 无线控制换气系统的gmp无菌净化车间 - Google Patents
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Abstract
本发明公开了一种无线控制换气系统的GMP无菌净化车间,包括布置在车间顶部左、右侧的空气流通管,每个空气流通管内被分为左、右两部分,靠近外侧部分的底面上设有气口,两相对内侧部分通过连接管连通,连接管内设有水平的滤网,连接管前、后管壁上设有紫外线灯,连接管底面设有出气口,还设有抽气风机与两空气流通管靠近外侧的部分连通,送气风机与内侧部分部连通;还设有电连接的空气质量传感器、空气质量分析仪及控制器,控制器的信号再通过无线通信模块与客户端无线通信连接,控制器用于控制抽气风机和送气风机。本发明检测空气质量后可控制调节换气系统,实现车间内部的空气交换,送入杀菌除尘后的洁净空气,提高了GMP车间内部洁净度。
Description
技术领域
本发明涉及GMP车间领域,主要是一种无线控制换气系统的GMP无菌净化车间。
背景技术
GMP车间是一种可实现内部净化的生产车间,在很多行业尤其是医药、食品等行业中应用广泛。GMP车间中一般具有空调系统,通过空调系统实现车间内部的换气。现有技术GMP车间的空调系统在工作过程中,由于直接从车间外引入空气,空气中的微生物等容易通过空调系统进入车间内部,造成车间被污染。
发明内容 本发明所要解决的技术问题是提供一种无线控制换气系统的GMP无菌净化车间,以解决现有技术GMP车间空调系统易对车间造成污染的问题。
为了解决上述技术问题,本发明所采用的技术方案为:
一种无线控制换气系统的GMP无菌净化车间,其特征在于:包括布置在车间顶部左、右侧的空气流通管,每个空气流通管内分别被竖向的隔墙均分为左、右两部分,其中左侧空气流通管左部底面、右侧空气流通管右部底面分别设有气口,左侧空气流通管右部、右侧空气流通管左部之间通过多道沿左右方向横跨在车间顶部的连接管连通,且连接管底面向下超过空气流通管底面,每个连接管内位于与空气流通管连通处下方分别设有水平的滤网,由滤网将连接管内分为上、下两部分,每个连接管位于滤网上方的前、后管壁上分别设有多组紫外线灯,每个连接管底面分别设有出气口,车间前侧壁外还挂设有抽气风机和送气风机,其中抽气风机分别通过管路与左侧空气流通管左部前端、右侧空气流通管右部前端连通,送气风机分别通过管路与左侧空气流通管右部前端、右侧空气流通管左部前端连通;在所述的其中一气口位置设有空气质量传感器,空气质量传感器的信号输出端接入一空气质量分析仪上,该空气质量分析仪再电连接至一控制器的输入端,控制器的信号输出端接入一无线通信模块,所述控制器通过无线通信模块与客户端无线通信连接,控制器用于控制抽气风机和送气风机。
所述的一种无线控制换气系统的GMP无菌净化车间,其特征在于:每个连接管顶部分别设有检修口,检修口上盖合安装有封门,且封门与检修口之间设有密封圈。
所述的一种无线控制换气系统的GMP无菌净化车间,其特征在于:连接管中滤网有多层,且从上至下滤网的网眼孔径依次减小。
本发明中,送气风机通过管路将空气送入左侧空气流通管右部、右侧空气流通管左部,然后通过连接管底面的出气口送入车间内,在连接管中空气首先受紫外线灯照射,以实现空气的灭菌作用,然后通过连接管中的多道滤网滤去较大的颗粒物,进而将洁净的空气送入车间内;由于左侧空气流通管左部底面、右侧空气流通管右部底面分别设有气口,车间内空气会通过气口进入,进而抽气风机通过左侧空气流通管左部、右侧空气流通管右部抽走车间内空气。另外可通过空气质量传感器、空气质量分析仪检测并分析出空气质量,当空气质量下降不能达到设定的空气指标时,可通过控制器控制调节抽气风机和送气风机,进而控制换气次数和换气量。
本发明的优点是:
本发明自动化程度高,检测空气质量后可控制调节换气系统,实现车间内部的空气交换,送入杀菌除尘后的洁净空气,提高了GMP车间内部洁净度,进而可有效防止GMP车间被空调系统污染。
附图说明
图1为本发明整体结构示意图。
图2为本发明连接管部分结构示意图。
图3为本发明电信号部分原理图。
具体实施方式
参见图1、2、3,一种无线控制换气系统的GMP无菌净化车间,包括布置在车间顶部左、右侧的空气流通管1,每个空气流通管1内分别被竖向的隔墙9均分为左、右两部分,其中左侧空气流通管左部底面、右侧空气流通管右部底面分别设有气口10,左侧空气流通管右部、右侧空气流通管左部之间通过多道沿左右方向横跨在车间顶部的连接管2连通,且连接管2底面向下超过空气流通管1底面,每个连接管2内位于与空气流通管连通处下方分别设有水平的滤网3,由滤网3将连接管2内分为上、下两部分,每个连接管2位于滤网3上方的前、后管壁上分别设有多组紫外线灯4,每个连接管2底面分别设有出气口5,车间前侧壁外还挂设有抽气风机6和送气风机7,其中抽气风机6分别通过管路与左侧空气流通管左部前端、右侧空气流通管右部前端连通,送气风机7分别通过管路与左侧空气流通管右部前端、右侧空气流通管左部前端连通。
在所述的其中一气口10位置设有空气质量传感器11,空气质量传感器的信号输出端接入一空气质量分析仪12上,该空气质量分析仪12再电连接至一控制器13的输入端,控制器13的信号输出端接入一无线通信模块14,所述控制器13通过无线通信模块14与客户端15无线通信连接,控制器13用于控制抽气风机6和送气风机7。
每个连接管2顶部分别设有检修口,检修口上盖合安装有封门8,且封门8与检修口之间设有密封圈。
连接管2中滤网3有多层,且从上至下滤网的网眼孔径依次减小。
Claims (3)
1.一种无线控制换气系统的GMP无菌净化车间,其特征在于:包括布置在车间顶部左、右侧的空气流通管,每个空气流通管内分别被竖向的隔墙均分为左、右两部分,其中左侧空气流通管左部底面、右侧空气流通管右部底面分别设有气口,左侧空气流通管右部、右侧空气流通管左部之间通过多道沿左右方向横跨在车间顶部的连接管连通,且连接管底面向下超过空气流通管底面,每个连接管内位于与空气流通管连通处下方分别设有水平的滤网,由滤网将连接管内分为上、下两部分,每个连接管位于滤网上方的前、后管壁上分别设有多组紫外线灯,每个连接管底面分别设有出气口,车间前侧壁外还挂设有抽气风机和送气风机,其中抽气风机分别通过管路与左侧空气流通管左部前端、右侧空气流通管右部前端连通,送气风机分别通过管路与左侧空气流通管右部前端、右侧空气流通管左部前端连通;在所述的其中一气口位置设有空气质量传感器,空气质量传感器的信号输出端接入一空气质量分析仪上,该空气质量分析仪再电连接至一控制器的输入端,控制器的信号输出端接入一无线通信模块,所述控制器通过无线通信模块与客户端无线通信连接,控制器用于控制抽气风机和送气风机。
2.根据权利要求1所述的一种无线控制换气系统的GMP无菌净化车间,其特征在于:每个连接管顶部分别设有检修口,检修口上盖合安装有封门,且封门与检修口之间设有密封圈。
3.根据权利要求1所述的一种无线控制换气系统的GMP无菌净化车间,其特征在于:连接管中滤网有多层,且从上至下滤网的网眼孔径依次减小。
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Application publication date: 20170531 |