CN204426071U - 一种食用菌栽培棚室增湿调温自动控制装置 - Google Patents
一种食用菌栽培棚室增湿调温自动控制装置 Download PDFInfo
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Classifications
-
- 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
- Y02A40/00—Adaptation technologies in agriculture, forestry, livestock or agroalimentary production
- Y02A40/10—Adaptation technologies in agriculture, forestry, livestock or agroalimentary production in agriculture
- Y02A40/25—Greenhouse technology, e.g. cooling systems therefor
Abstract
本实用新型公开了一种食用菌栽培棚室增湿调温自动控制装置,涉及农业技术领域。它包括自吸增压泵、湿度感应开关、箱体、增湿调温机构和送风机构;增湿调温机构包括装于箱体进风口端的水湿帘,装于箱体内的散热片,装于两散热片间的蛇形水管,所述蛇形水管分二支,一支连接水湿帘上方的送水管,另一支连接强压微细喷头,强压微细喷头设置在送风筒体左端;送风机构包括一端与箱体连通的送风筒体和置于箱体内面对送风筒体端口的风机,送风筒体两侧面从与箱体连接端至另一端排布有风孔口;湿度感应开关一端连接电源,另一端分别连接在自吸增压泵及风机上。本实用新型设计合理,结构简单,便于操作,省时、省力;加湿均匀,效果很好。
Description
技术领域
[0001] 本实用新型涉及农业技术领域,尤其涉及一种食用菌栽培棚室增湿调温自动控制
目.0
背景技术
[0002] 食用菌是可供人类食用的大型真菌。具体地说食用菌是可供食用的蕈菌;蕈菌,是指能形成大型的肉质(或胶质)子实体或菌核组织的高等真菌类的总称。
[0003] 食用菌在菌丝生长阶段并不严格要求潮湿条件,一般食用菌的生长环境需要在O0C _30°C间发育,但在出菇或出耳时,最适温度为10°C _20°C之间,环境中的相对湿度则需在80_95%之间,而且需要适合的通风和光照。
[0004] 随着人们对食用菌(或者药用菌)营养、医疗保健价值的研宄认识,以及食用菌(或者药用菌)具有利用自然界内的碳素营养将木质素、纤维素及半纤维素转化为菌体蛋白,实现了农业下脚料的循环利用,极大地改善了生态环境,其生产规模逐年扩大。但在栽培上,由于食用菌(或者药用菌)子实体生长阶段喜相对低温及高湿生长环境。湿度小,菌丝易老化衰退,影响食用菌(或者药用菌)的产量及品质;湿度过大或子实体上被水喷易造成烂菇,使生产收益大大受损。生产中,人们往往通过人工喷水、地面漫灌等措施来完成栽培场所增湿过程。这种操作不仅浪费水源、用工劳力投资加大,而且在对环境湿度控制中全凭操作人的感官来判断,或利用干湿温度计测试,难以达到精准调控及降低生产成本的效果。
实用新型内容
[0005] 为解决上述技术缺陷,本实用新型目的是提供一种食用菌栽培棚室增湿调温自动控制装置,通过感应开关实现增湿调温的自动化控制;同时,结构简单,便于操作,省工、省时,价格低廉。
[0006] 本实用新型的方案如下:一种食用菌栽培棚室增湿调温自动控制装置,包括自吸增压泵、湿度感应开关、箱体、增湿调温机构和送风机构;
[0007] 所述增湿调温机构包括装于箱体进风口端的水湿帘,装于箱体内的散热片,装于两散热片间的蛇形水管,所述蛇形水管分二支,一支连接水湿帘上方的送水管,另一支连接强压微细喷头,强压微细喷头设置在送风筒体左端;
[0008] 所述送风机构包括一端与箱体连通的送风筒体和置于箱体内面对送风筒体端口的风机,送风筒体两侧面从与箱体连接端至另一端排布有风孔口,风孔口由小到大排列;
[0009] 所述湿度感应开关一端连接电源,另一端分别连接在自吸增压泵及风机上。
[0010] 所述送水管位于进风口端水湿帘上部的部分设置有若干出水孔。
[0011] 所述湿度感应开关内由湿敏电阻及单片机操控。
[0012] 本实用新型装置设计合理,结构简单,便于操作,节约资源;省工、省时,价格低廉;空间加湿均匀,效果好,不仅能很好地根据不同食用菌(或者药用菌)品种栽培中对空气湿度的要求进行恰当地增或降湿,而且克服了人工对栽培场所湿度判断的随意性,实现对空气湿度的自动化调控,极大地减少了栽培用工的成本;同时增湿调温速度快、空间加湿均匀,且用水量少。
附图说明
[0013] 图1为本实用新型的结构示意图;
[0014] 图2为本实用箱体剖视的结构示意图;
[0015] 其中:1、自吸增压泵;2、湿度感应开关;3、箱体;5、送风机构;6、水湿帘;7、散热片;8、蛇形水管;9、送水管;10、出水孔;11、强压微细喷头;12、送风筒体;13、风机;14、风孔口 ; 15、小孔。
具体实施方式
[0016] 下面结合附图对本实用新型做进一步说明;
[0017] 如图1和图2所示,一种食用菌栽培棚室增湿调温自动控制装置,包括自吸增压泵1、湿度感应开关2、箱体3、增湿调温机构和送风机构5 ;
[0018] 所述增湿调温机构包括装于箱体3进风口端的水湿帘6,装于箱体内的散热片7,装于两散热片7间的蛇形水管8,所述蛇形水管8分二支,一支连接水湿帘上方的送水管9,另一支连接强压微细喷头11,强压微细喷头11设置在送风筒体左端;
[0019] 所述送风机构5包括一端与箱体3连通的送风筒体12和置于箱体3内面对送风筒体12端口的风机13,送风筒体12两侧面从与箱体3连接端至另一端排布由小到大的风孔口 14,送风筒体12距箱体3约1.5m处的下方留有小孔15 ;
[0020] 所述湿度感应开关2 —端连接电源,另一端分别连接在自吸增压泵I及风机13上。
[0021] 所述送水管9位于进风口端水湿帘6上部的部分设置有若干出水孔10。
[0022] 所述湿度感应开关2内由湿敏电阻及单片机操控,设定湿度范围为多数食用菌子或者药用菌子实体生长所需的85〜95%,当空气相对湿度低于85%时,电源打开;当相对湿度高于95%时,电源关闭。
[0023] 具体的,使用时,当食用菌(或者药用菌)栽培棚室湿度低于设定的85%时,湿度感应开关2自动接通电源,自吸增压泵I将地下冷水或经加温的热水送经蛇形水管8至强压微细喷头11及水湿帘6上方漏水水槽,风机13将饱和水汽吹送入送风筒体12,再由筒体两侧的风孔口 14将饱和水汽由近及远地均匀快速送出,从而使棚室内各处均匀加湿;经强压微细喷头11喷出未蒸发的多余水分经送风筒体12近箱体下方的小孔15引流回收。当湿度高于95%时,湿度感应开关2自动断电,停止输送水汽,棚室内湿度不再升高。且夏季高温季栽培,通地下冷水增湿的同时还可降温;冬季低温季通热水,可升温。从而满足食用菌(或者药用菌)不同季节栽培所需的温湿度要求。
[0024] 尽管上文对本实用新型的具体实施方式给予了详细描述和说明,但是应该指明的是,我们可以依据本实用新型的构想对上述实施方式进行各种等效改变和修改,其所产生的功能作用仍未超出说明书所涵盖的精神时,均应在本实用新型的保护范围之内。
Claims (3)
1.一种食用菌栽培棚室增湿调温自动控制装置,包括自吸增压泵、湿度感应开关、箱体、增湿调温机构和送风机构;其特征在于: 所述增湿调温机构包括装于箱体进风口端的水湿帘,装于箱体内的散热片,装于两散热片间的蛇形水管,所述蛇形水管分二支,一支连接水湿帘上方的送水管,另一支连接强压微细喷头,强压微细喷头设置在送风筒体左端; 所述送风机构包括一端与箱体连通的送风筒体和置于箱体内面对送风筒体端口的风机,送风筒体两侧面从与箱体连接端至另一端排布有风孔口; 所述湿度感应开关一端连接电源,另一端分别连接在自吸增压泵及风机上。
2.根据权利要求1所述的一种食用菌栽培棚室增湿调温自动控制装置,其特征在于:所述送水管位于进风口端水湿帘上部的部分设置有若干出水孔。
3.根据权利要求1所述的一种食用菌栽培棚室增湿调温自动控制装置,其特征在于:所述湿度感应开关内由湿敏电阻及单片机操控。
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