CN2937903Y - 悬吊型组合式无室外机的节能环保空调 - Google Patents
悬吊型组合式无室外机的节能环保空调 Download PDFInfo
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- CN2937903Y CN2937903Y CN 200620121448 CN200620121448U CN2937903Y CN 2937903 Y CN2937903 Y CN 2937903Y CN 200620121448 CN200620121448 CN 200620121448 CN 200620121448 U CN200620121448 U CN 200620121448U CN 2937903 Y CN2937903 Y CN 2937903Y
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- air
- air conditioner
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- 239000000725 suspension Substances 0.000 title 1
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- RYGMFSIKBFXOCR-UHFFFAOYSA-N copper Chemical compound 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- 229910052782 aluminium Inorganic materials 0.000 claims description 2
- XAGFODPZIPBFFR-UHFFFAOYSA-N aluminum Chemical compound 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- GWEVSGVZZGPLCZ-UHFFFAOYSA-N titan oxide Chemical compound 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O=[Ti]=O GWEVSGVZZGPLCZ-UHFFFAOYSA-N 0.000 description 1
- 229910001929 titanium oxide Inorganic materials 0.000 description 1
- 238000010792 warming Methods 0.000 description 1
Abstract
一种悬吊型组合式无室外机的节能环保空调,由两个外型相同的A和B机组合成一体:A机中装有,新风量自动调节空气净化系统;B机中装有,废气能量回收净化,冷凝水能量回收再利用和制冷系统组成。利用废气和冷凝水能量回收和纳米光触媒紫外线杀菌净化处理的方法,提高了空调的能效比,切断了空调废气对自然环境的污染;组合式设计解决了安装中因建筑面积限制和远离噪音的要求,还可组合成良好的除湿机/加湿机。B机可以与分体式空调室内机兼容匹配,如将现有已安装使用的室外机统统改造,这项工程必将对全国以至全球空调的节能省电,自然环境保护产生巨大的经济效益和技术性突破。
Description
技术领域
本实用新型涉及一种悬吊型组合式无室外机的节能环保空调。尤其在提高能效比的同时切断了空调废气对自然环境的污染;属于家电技术领域。
背景技术
目前使用的空调,其不足之处在于:一.空调排放的废气,对自然环境的污染,以至于臭氧层破坏,地球温室效应的影响越来越严重。二、能效水平低,耗电功率大。三、空调一般需要装有一个室外机。以三菱电机III SH-J12vv型空调为例,它是由1个室内机和装在墙外的室外机组成。室内机和室外机之间由带保温层输液铜管及电源线、控制电线、冷凝水排水管等穿墙连接而成。室外机的缺点在于:a、无废气回收和净化处理装置,环境污染大;b、室外机有损建筑物外墙结构和破坏环境美观。c、不安全,室外机安装维修时需高空作业,危险性大;d、室外机长期暴露在外,容易老化、腐蚀,易产生故障,使用寿命缩短。e、易受室外天气影响,空调工况不稳定,表现在冰冻和炎热天气情况下,制热或制冷效果不理想。f、首先空调排出的冷凝水和废气中的能量得不到充分利用,其次内外机连接的铜管的能量损耗不可避免,这些因素限制了空调能效比的进一步提高。g、内外机组合的结构,增加了原材料的消耗。
在本实用新型之前,还有一种无室外机的水冷型空调。例如实用新型专利号CN01252060.是在原空调原结构不变的情况下,仅将室外机从原来的风冷型改变为水冷型,需要将热交换器固定在一封闭型箱体内由水泵喷水冷却解决的柜式空调机,由于其体积大,占空间,噪声等问题,难以普及和推广。如今,提高空调能效水平是全球性的大趋势,日本,美国,欧盟已明确制定了目标值和时间表,如美国到2006年要实施的新能源标签,分体式热泵型空调器的能效比应达到3.81以上;日本新能源法规定制冷量小于2500W的分体式空调的能效比应达到5.27以上,3200W-4000W的分体式空调的能效比应达到3.65以上。根据基本的传热方式:换热量Q=KFM;其中:K为传热系数;F为换熟面积;M为传热温差;所以一般都采用增加热交换表面积,增加热交换系数,改进压缩机效率等方法,但是也提高了制造成本。其高贵的价格,使购买者望洋生叹。因此既要使空调的制造成本降低,又要使空调的能效比(EER)得到大幅度提高是有一定的难处所在。
发明内容
本实用新型的目的是克服上述空调的不足,提供一种悬吊型组合式无室外机的节能环保空调。下面以此为例加以描述:它由两个外型相同的A和B机体组合成一体,也可以分开作两处安装,便于解决实际安装中因建筑面积限制和远离噪音的要求;如果将A和B对换成B和A组合安装,就成为一台性能良好的除湿机/加湿机。B机体可以独立与现有分体式空调,热泵型中央空调的天花板嵌入型,悬吊型,壁挂型等室内机兼容匹配,其构思简便,结构巧妙是现有空调无法比喻的。在A机体中装有:新风量自动调节的空气净化系统;在B机体中装有:热泵或单冷制冷系统(蒸发器在A机体中);废气能量回收净化处理系统;冷凝水能量回收再利用系统;以及辅助控制系统组成。新风量自动调节的空气净化系统为:新风电机运转使室外空气经电动阀风口进入机体右侧,经过滤网除尘过滤,蒸发器(制热或制冷)、纳米光触媒紫外线装置消毒,杀菌,净化,健康的空气由出风口输入室内。其中新风量自动调节装置,是由电动阀、温度传感器和装有过滤棉的室内下进风口组成,利用空气运行时,趋近路和走直线的特点,当电动阀开启时室内空气很少引入,电动阀关小时才会补充引入,作用是:根据各地区的不同气候、不同季节的温度变化自动调节新风流量,用以扩大使用范围;在电控板的单片机中设定一个上下限温度数值程序,根据室外温度状态自动调节电动阀门控制新风流量,当天气温度超过设定数值时电动阀风口自动关闭,由室外进风转换成室内下进风口进风,形成室内空气循环工作。避免压缩机长时间的超负荷状态运行。废气能量回收净化处理系统为:排风机运转将室内废气从回风口进入机体左侧,然后经冷凝器全热交换,回收废气中的能量,同时废气在通过冷凝器的过程中被纳米光触媒紫外线装置,净化、杀菌,处理后的空气排出室外,实现环保功能。冷凝水能量回收再利用系统为:微型循环水泵提升蓄水盆中的冷凝水,经过压缩机高压铜管外侧的储水器装置后喷淋至冷凝器上,进行全热交换能量回收,同时利用全热交换过程中的水分子和光触媒作用,对废气中的有害物质进一步地杀菌和净化。为了适应更多地区使用,专门设计了一个三通风管回风装置的配件,可供安装时选择。它由:三通风管,电动控制阀,结合回风温度传感器组成;可以自动/手动控制;如设定为自动,当空调工作,室内温度达到人体舒适的预定温度时,回风温度传感器发出信息通过电控板,指令电动控制阀关闭室内回风口,使回风从接在三通风管上的室外风口进入,直接冷却B机体中的冷凝器,便于节约室内冷气能量的流失。辅助控制系统为:装有单片机程序的电控板根据输入指令和温度传感器接收的信息,有序地控制风机、电动风阀、纳米光触媒紫外线装置,循环水泵,压缩机等实现制冷、制热、化霜、杀菌消毒、等各种功能。A,B机体组合搭配的方式,不仅大大降低了制造成本,而且可以组合成多种方案的产品,例如:悬吊型组合式无室外机的节能环保空调方案,A机和B机分开安装方案,B机和A机组合成除湿机/加湿机的方案,B机和分体式空调室内机兼容组合安装方案,不装三通风管室内回风安装方案,室外空气直接引入B机安装方案,供炎热地区使用的悬吊型组合式无室外机单冷节能环保空调方案,等等款式和产品。
本实用新型的有益效果是:无室外机,克服了因室外机引起的许多缺陷;空调排出的冷凝水和废气中的能量得到了充分利用,同时设置了新风量自动调节的空气净化系统和配件三通风管回风装置,以及储水器装置,进一步提高了空调的能效比;利用废气及冷凝水能量回收和纳米光触媒紫外线装置净化处理的方法,切断了空调排放的废气对自然环境的污染;组合式设计解决了实际安装中因建筑面积限制和远离噪音的要求,还可组合成除湿机/加湿机;B机体可以独立与现有分体式空调,热泵型中央空调的天花板嵌入型,悬吊型,壁挂型等室内机兼容匹配,如果将现有安装使用的室外机统统改造,这项工程必将对全国以至全球空调的节能省电,自然环境保护产生巨大的经济效益和技术性突破。
附图说明
附图1.是一种悬吊型组合式无室外机的节能环保空调的原理示意图。
附图2.是一种悬吊型组合式无室外机装有三通风管回风装置的节能环保空调原理示意图。
附图3.是一种悬吊型组合式无室外机单冷的节能环保空调的原理示意图。
附图4.是一种悬吊型组合式无室外机的节能环保空调的外型示意图。
附图5.是一种A机和B机分开安装方案示意图。
附图6.是一种B机和A机组合成除湿机/加湿机的方案示意图。
附图7.是一种B机和分体式空调室内机兼容组合安装方案示意图。
附图8.是一种不装三通风管室内回风安装方案的外型示意图。
附图9.是一种室外空气直接引入B机安装方案的外型示意图。
附图10.是一种装有三通风管回风装置的安装方案外型示意图。
具体实使方式一种悬吊型组合式无室外机的节能环保空调,其特征在于:它由两个外型相同的A和B机体,组合成为一体,也可以分开安装,B机可以独立与分体式空调室内机兼容匹配,还可以组合成为除湿机/加湿机;在A机体中装有:新风量自动调节的空气净化系统;在B机体中装有:热泵或单冷制冷系统,废气能量回收净化处理系统,冷凝水能量回收再利用系统,以及辅助备件;新风量自动调节的空气净化系统为:风机1,保温和吸音材料2,出风口3,接水盘4,纳米光触媒紫外线装置5,排水管6,蒸发器7,室内下进风口8,湿温传感器9.(做空调时可以不装),过滤网10,新风口11,室外温度传感器12,电动阀13;热泵或单冷制冷系统为:四通阀24,与三通阀14.液气分离器26.冷凝器23.压缩机34.连接;二通阀15,与节流部件16.与冷凝器23.的另一端连接;压缩机34.吸气端与液气分离器26.连接;二通阀15.三通阀14.的另一端与A机的蒸发器7.连接;(化霜温度传感器22.和四通阀24,单冷时不装)(液气分离器26.在2匹以下小型空调时可以不装);废气能量回收净化处理系统为:回风温度传感器27,回风口29,光触媒紫外线装置28.风机30,排风口19;冷凝水能量回收再利用系统为:循环水泵31,与储水器装置25,与喷淋件20.连接,导流器21.(扬程低的小水泵可以不装),蓄水盆32,溢流管18;电控板33.与各被控制部件通过电路连接。以下按照附图1.2.3.作进一步的具体实使描述:A.B机体是由铝合金板型材或不锈钢板型材或镀锌钢板或镀铝锌板和保温材料以及吸音材料2.制成的箱体,B机体外表面可以不贴保温材料;风机1.和风机30.采用双转速外转子电机风机,以求体积小,风速高,省电。如采用离心式风机,可改变为出风口位置与新风口位置相对称,回风口29.位置与排风口19.位置相对称。风机1.和风机30.的电源线与电控板33.连接。接水盘4.用阻燃泡沫塑料或加入光触媒材料的泡沫塑料或塑料或金属材料贴保温板制成,装在蒸发器7.下面。纳米光触媒紫外线装置5.和28,至少有一个光触媒紫外线灯,接合其它纳米二氧化钛等材料组成,装在箱体内侧,电源线与电控板33.连接。起空气净化杀菌作用,功率根据空调大小确定。室内下进风口8,过滤棉略密于过滤网10,装在A机体下方;湿温传感器9.与电控板33.连接。也可使用湿敏电阻,供除湿机/加湿机时使用,根据用户选择做空调时可以不装;室内下进风口8.和室外温度传感器12,新风风口11.电动阀13.组成新风量自动调节功能,根据室外温度状态自动调节电动阀门控制新风流量,电动阀13和室外温度传感器12,电线与电控板33.连接。当室外空气温度异常时,温度传感器12.发出信息,通过电控板33.关闭电动阀13.此时空气从室内下进风口8.进入室内循环,直到室外空气温度正常后自动恢复原状。三通阀14.二通阀15.连接到A机蒸发器7.铜管上,便于两体分离安装和检修。节流部件16,由毛细管,单向阀,过滤器组成,也可以使用电子膨胀阀或膨胀阀或电磁膨胀阀,连接在二通阀15.和冷凝器23.之间的铜管上;三通阀14.另一接口与四通阀24.连接,四通阀24.另接口与冷凝器23.另一铜管连接,四通阀24.上一接口与液气分离器26.连接,四通阀24.下接口与压缩机34,排气铜管连接,压缩机34,的吸气铜管与液气分离器26.另一铜管连接,四通阀24.和压缩机34,的电源线与电控板33.连接。采用卧式或立式压缩机可以制成高度不超过280MM的薄型机体,便于符合建筑吊顶结构相配套。可以将几只压缩机并联安装在机体内以增加输出功率,也可以使用变频,旋转式.涡旋式,往复式等压缩机。可使用环保制冷剂R407C,R410A,R124等,当然也可以使用与压缩机配套的R22,R134等冷媒;以满足改装分体式空调室外机的需求。铁页17,可以用与A.B机体相同颜色和材质的材料,折边成匚型,用作A.B机体外部的联接固定;溢流管18.限制水位,焊接在B机体外侧下方;喷淋件20.由热套塑管或塑料管或金属管做成;导流器21.用环保湿帘制成,装在喷淋件20.下的冷凝器23.上面,限制水流飞溅和减噪作用(扬程低的小水泵可以不装)。储水器装置25.包在高压管外面,也可以把压缩机排气铜管弯成U型侵在蓄水盆32.中,利用冷凝水温度,限制压缩机过热,同时起到节能效果。附图2.中的备件三通风管回风装置由:三通风管36.电动控制阀35.结合回风温度传感器27.组成,电线与电控板33.连接。壳体用镀锌薄钢板或塑料制成。其工作原理是:当空调运转,室内温度达到人体舒适温度时,回风温度传感器27.发出指令,通过电控板33.使风机自动进入低速运转并关闭电动控制阀35,此时回风从室外风管(也可以接在新风管上)引入,经过三通风管36.上口,由室外空气直接冷却B机体内的冷凝器23,制止了室内冷气能量的流失。直到室内温度回上升到预定数值时电动控制阀35.自动开启,恢复室内空气进入B机体,以达到理想的节能效果。循环水泵31.功率根据空调大小确定,并装有水位控制开关,通过接到电控板33.的电路,安全地将蓄水盆32.中的冷凝水提升,经过储水器装置25.热套塑管制作的喷淋件20.导流器21.冷却冷凝器23,接合光触媒紫外线装置28.实现能量回收和废气消毒杀菌和净化功能。电控板33.可以根据实际使用需要安置在A机体或B机体内,电控板上还装有单片机和控制接口.等常用电器元件,供线控开关或无线遥控器配套使用,以控制空调的各种电气动作和功能。除湿机/加湿机功能,是通过A机和B机左右互换的组合方法实现:卸掉新风风口11.并封闭入口,卸掉出风口3,和回风口29,将A机体和B机体左右对换成B,A组合,用铁页17.联接牢固,铜管分别接到三通阀14,二通阀15上,冷凝水管接到B机蓄水盆32.中,溢流管18.管路引接至室外;将风机1.和循环水泵31.电线连接到电控板33。作除湿机时循环水泵31.不通电,此时室内空气由室内下进风口8.进入蒸发器7.冷冻除湿,再由风机1.送入B机体中的冷凝器23.干燥,通过排风口19.输入室内。加湿机时循环水泵31.通电工作,将蓄水盆32.的冷凝水通过储水器装置25,喷淋件20.导流器21.喷洒在冷凝器23.上,由风机30.通过排风口19.送入室内进行加湿工作。根据湿温传感器9.检测的信息通过电控板33.控制风机1.和风机30.的转速或选一台或二台同时运转。该除湿机/加湿机具有速度快,效率高,温湿度面积均匀,无死角,不占有空间等优点。是一种良好的独立产品。为适应有些地区气候炎热只使用制冷空调的实际,附图3.是一种悬吊型组合式无室外机单冷的节能环保空调的原理示意图。只要简去化霜温度传感器22,四通阀24,或液气分离器26。便可以成为悬吊型组合式无室外机单冷的节能环保空调。以满足市场需求。本发明所谓的组合式可以组合成:一种悬吊型组合式无室外机的节能环保空调。一种悬吊型组合式无室外机单冷的节能环保空调。一种A机和B机分开安装方案。一种B机和A机组合成除湿机/加湿机的方案。一种B机和分体式空调室内机兼容组合安装方案。一种不装三通风管由室内回风安装方案。一种室外空气直接引入B机安装方案。一种装有三通风管回风装置的安装方案等延伸品种。B机和分体式空调室内机兼容组合安装方案是:原来的室内机及室内处置不变动,只要将现有使用空调的室外机拆去更换成B机安装到室内合适的位子,B机略低于室内机37.利于冷凝水畅通流入B机蓄水盆32中即可,将输液保温铜管分别接到三通阀14,二通阀15上,,利用原来室内机37.的控制电线结合B机简单的控制要求连接到电控板33.上,就能实现无室外机的节能环保效果。此举有利于改变目前分体式空调在节能环保方面的不合理状态。利用本发明的原理和结构布局,可以制造中大型落地式空调,以满足市场需求。根据上述换热量Q=KFM的基本传热方式,本发明着重在K传热系数;M传热温差;等方面给以改进,例如:废气和冷凝水能量回收,新风量自动调节,三通风管回风装置,储水器装置等稳定了压缩机的工况,减少了冷媒由于温度高而产生的过高压强,从而减轻了压缩机的工作负载,耗电量会大大降低,同时采用了高效率风机,环保冷媒,纳米光触媒等新材料,有效地提高了压缩机的输出效率。而且组合式设计降低了制造成本,所以完全可以做到价格便宜,能效比超过5.27以上具有竞争力的高质量产品。
Claims (10)
1.一种悬吊型组合式无室外机的节能环保空调,其特征在于:它由两个外型相同的A和B机体,组合成为一体,也可以分开安装,B机可以独立与分体式空调室内机兼容匹配,还可以组合成为除湿机/加湿机,在A机体中装有:新风量自动调节的空气净化系统;在B机体中装有:热泵或单冷制冷系统,废气能量回收净化处理系统,冷凝水能量回收再利用系统,以及辅助备件;新风量自动调节的空气净化系统为:风机1,保温和吸音材料2,出风口3,接水盘4,纳米光触媒紫外线装置5,排水管6,蒸发器7,室内下进风口8,湿温传感器9.(做空调时可以不装),过滤网10,新风口11,室外温度传感器12,电动阀13;热泵或单冷制冷系统为:四通阀24,与三通阀14.液气分离器26.冷凝器23.压缩机34.连接;二通阀15,与节流部件16.与冷凝器23.的另一端连接,压缩机34.吸气端与液气分离器26.连接;二通阀15.三通阀14.的另一端与A机.的蒸发器7.连接;(化霜温度传感器22.和四通阀24,单冷时不装)(液气分离器26.在2匹以下小型空调时可以不装);废气能量回收净化处理系统为:回风温度传感器27,回风口29,光触媒紫外线装置28.风机30,排风口19;冷凝水能量回收再利用系统为:循环水泵31,与储水器装置25,与喷淋件20连接,导流器21.(扬程低的小水泵可以不装),蓄水盆32,溢流管18;电控板33.与各被控制部件通过电路连接。
2.根据权利要求1所述的一种悬吊型组合式无室外机的节能环保空调,其特征在于所说的A,B,机体,是由铝合金板型材或不锈钢板型材或镀锌钢板或镀铝锌板和保温材料以及吸音材料2.制成,B机体外表面可以不贴保温材料;
3.根据权利要求1.所述的一种悬吊型组合式无室外机的节能环保空调,其特征在于所说的风机1.和风机30.采用双转速外转子电机风机,如采用离心式风机,可改变为出风口位置与新风口位置相对称。
4.根据权利要求1.所述的一种悬吊型组合式无室外机的节能环保空调,其特征在于所说的节流部件16,由毛细管,单向阀,过滤器组成也可以使用电子膨胀阀或膨胀阀或电磁膨胀阀。
5.根据权利要求1.所述的一种悬吊型组合式无室外机的节能环保空调,其特征在于所说的压缩机34,采用卧式或立式压缩机,可以将几只压缩机并联安装在机体内,也可以使用变频式,旋转式.涡旋式,往复式等压缩机。
6.根据权利要求1.所述的一种悬吊型组合式无室外机的节能环保空调,其特征在于所说的储水器装置25,包在高压管外面,也可以把压缩机排气铜管弯成U型侵在蓄水盆中。
7.根据权利要求1.所述的一种悬吊型组合式无室外机的节能环保空调,其特征在于所说的电控板33,可以根据实际使用需要安置在A机体或B机体内,电控板上还装有单片机和控制接口;
8.根据权利要求1.所述的一种悬吊型组合式无室外机的节能环保空调,其特征在于所说的除湿机/加湿机,通过A机和B机左右互换的组合方法实现。
9.根据权利要求1.所述的一种悬吊型组合式无室外机的节能环保空调,其特征在于所说的B机体独立与现有分体式空调室内机兼容匹配,还可以与热泵型中央空调的天花板嵌入型,悬吊型,壁挂型等室内机兼容匹配。
10.根据权利要求1.所述的一种悬吊型组合式无室外机的节能环保空调,其特征在于所说的纳米光触媒紫外线装置5.和28,至少有一个光触媒紫外线灯组成。
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