CN105570996A - 一种立柜式多功能家用空调器 - Google Patents
一种立柜式多功能家用空调器 Download PDFInfo
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- CN105570996A CN105570996A CN201610094475.0A CN201610094475A CN105570996A CN 105570996 A CN105570996 A CN 105570996A CN 201610094475 A CN201610094475 A CN 201610094475A CN 105570996 A CN105570996 A CN 105570996A
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- 238000005192 partition Methods 0.000 claims abstract description 8
- 239000003507 refrigerant Substances 0.000 claims abstract description 5
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- 238000004378 air conditioning Methods 0.000 claims description 19
- CURLTUGMZLYLDI-UHFFFAOYSA-N carbon dioxide Chemical compound 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O=C=O CURLTUGMZLYLDI-UHFFFAOYSA-N 0.000 claims description 18
- 229910002092 carbon dioxide Inorganic materials 0.000 claims description 18
- 239000001569 carbon dioxide Substances 0.000 claims description 18
- 238000000746 purification Methods 0.000 claims description 15
- 238000005457 optimization Methods 0.000 claims description 13
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Classifications
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F1/00—Room units for air-conditioning, e.g. separate or self-contained units or units receiving primary air from a central station
- F24F1/0003—Room units for air-conditioning, e.g. separate or self-contained units or units receiving primary air from a central station characterised by a split arrangement, wherein parts of the air-conditioning system, e.g. evaporator and condenser, are in separately located units
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F11/00—Control or safety arrangements
- F24F11/89—Arrangement or mounting of control or safety devices
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F13/00—Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
- F24F13/28—Arrangement or mounting of filters
Abstract
本发明涉及一种立柜式多功能家用空调器,包括:室内机,所述室内机设置在室内;室外机,所述室外机设置在室外,所述室外机通过冷媒管与所述室内机相连,所述室内和室外由隔墙隔开;湿度调节装置,所述湿度调节装置固定在所述室内机内部且与之相连,用于对室内空气湿度进行监测并调节。本发明通过在空调器内设置湿度调节装置,可对室内的空气湿度进行有效调节,防止室内过于干燥而不利于人体健康。
Description
技术领域
[0001]本发明涉及空调技术领域,具体涉及一种立柜式多功能家用空调器。
背景技术
[0002]传统的家用空调只对房间温度进行调节,但是随着人们生活水平的提高,人们对室内环境要求也越来越高。室内空气的净化需要加湿器、新风机和空气净化器等多个电器同时进行调控。目前这些产品在调控上存在以下缺陷:(I)这些产品基本上只进行监测,不能进行有效调控;(2)这些产品占用过多的居室空间,使室内空间拥挤;(3)现有的空气净化器风量小、气流组织差,空气净化器自带的PM2.5监测系统大都是指示空气净化器出风口的PM2.5浓度;(4)现有的家用空调器采用的都是电吸附方式进行空气净化,这种净化方式容易产生臭氧,容易对人体产生伤害。
发明内容
[0003]本发明所要解决的技术问题是针对现有技术的不足,提供一种立柜式多功能家用空调器。
[0004]本发明解决上述技术问题的技术方案如下:一种立柜式多功能家用空调器,包括:
[0005]室内机,所述室内机设置在室内;
[0006]室外机,所述室外机设置在室外,所述室外机通过冷媒管与所述室内机相连,所述室内和室外由隔墙隔开;
[0007]湿度调节装置,所述湿度调节装置固定在所述室内机内部且与所述室内机电连接,用于对室内空气湿度进行监测并调节。
[0008]本发明的有益效果是:本发明通过在空调器内设置湿度调节装置,不仅具有普通空调的功能,还可对室内的空气湿度进行有效调节,防止室内过于干燥而不利于人体健康。
[0009]在上述技术方案的基础上,本发明还可以做如下改进。
[0010]进一步,所述室内机包括:
[0011]机壳,所述机壳的侧壁上开设有空调出风口 ;
[0012] 控制器,所述控制器设置在所述机壳侧壁的外侧面上,所述控制器位于所述空调出风口的下方;
[0013]蒸发器,所述蒸发器固定设置在所述机壳侧壁的内侧面上且斜向布置;
[0014]接水盘,所述接水盘固定在所述室内机侧壁的内侧面上且位于所述蒸发器的下端;
[0015]风机,所述风机的上端开设有风机出风口,所述风机出风口位于所述蒸发器的下方,所述风机与所述控制器电连接;所述湿度调节装置位于所述风机出风口和所述蒸发器之间且与所述控制器电连接。
[0016]采用上述进一步方案的有益效果是:通过将湿度调节装置设置在风机出风口与蒸发器之间,可将加湿后的空气通过风机直接吹送至空调出风口处。
[0017]进一步,所述湿度调节装置包括:
[0018]湿度传感器,所述湿度传感器固定在所述机壳的侧壁的外侧面上,所述湿度传感器与所述控制器相连;
[0019] 加湿器,所述加湿器位于所述风机出风口和所述蒸发器之间且与所述控制器电连接;
[0020]水位报警器,所述水位报警器固定在所述加湿器的内壁上且与所述控制器电连接;
[0021]所述控制器用于接收所述湿度传感器检测到的室内湿度值,并将所述室内湿度值与预设湿度值进行对比,当所述室内湿度值小于预设湿度值时,控制器控制加湿器启动运行,当所述室内湿度值不小于预设湿度值时,控制器控制加湿器停止运行;当所述加湿器内的水位低于预设水位时,所述控制器控制所述水位报警器进行声控报警。
[0022] 采用上述进一步方案的有益效果是:通过设置湿度传感器,可对室内的湿度进行实时监控,通过在加湿器内设置水位报警器,可避免加湿器在水量不足的时候进行加湿,防止损坏加湿器。
[0023] 进一步,所述加湿器为超声波加湿器。
[0024]采用上述进一步方案的有益效果是:采用超声波加湿器,加湿均匀,加湿效果更好。
[0025] 进一步,还包括:
[0026]电加热装置,所述电加热装置固定在所述蒸发器的一侧面上且与所述控制器相连;
[0027]保温管,所述保温管的两端分别开设有进风口和排风口 ;所述隔墙上开设有通孔,所述保温管插接在所述通孔内;所述排风口位于所述机壳内部,所述进风口位于室外;
[0028]轴流风机,所述轴流风机固定在所述保温管的内壁上;所述轴流风机与所述控制器电连接;
[0029]电动调节阀,所述电动调节阀固定在所述保温管的内壁上;所述电动调节阀与所述控制器电连接;
[0030]所述机壳上开设有回风口,所述回风口位于所述空调出风口的下方,所述机壳的内侧壁上固定有过滤器,所述过滤器将所述回风口覆盖住,所述排风口与所述回风口相对布置。
[0031]采用上述进一步方案的有益效果是:通过设置保温管、轴流风机和电动调节阀,可将室外新风经过过滤器过滤后送到室内,避免室内外空气的不流通;通过在室内机内部设置电加热装置,可满足冬季加热室外新风需求。
[0032] 进一步,所述过滤器依次包括中效过滤器和亚高效过滤器,所述亚高效过滤器的一侧面固定在所述机壳的内侧壁上,其另一侧面与所述中效过滤器固定相连。
[0033] 采用上述进一步方案的有益效果是:通过在回风口处设置中效和亚高效过滤器,可对抽到室内的新风进行有效过滤,避免将外界污染的空气抽到室内。
[0034]进一步,所述中效过滤器的滤料为无纺布,所述亚高效过滤器的滤料为超细玻璃纤维。
[0035]进一步,所述机壳侧壁的外侧面上固定连接有二氧化碳浓度传感器,所述二氧化碳浓度传感器与所述控制器电连接;
[0036]所述控制器用于实时接收所述二氧化碳浓度传感器检测到的室内二氧化碳浓度值,且将所述室内二氧化碳浓度值与预设二氧化碳浓度值进行比较,当所述室内二氧化碳浓度值大于预设二氧化碳浓度值时,控制所述电动调节阀和轴流风机启动运行。
[0037]采用上述进一步方案的有益效果是:通过设置二氧化碳浓度传感器,可当室内二氧化碳浓度超标后,自动控制新风装置启动运行。
[0038]进一步,所述机壳的内部的底壁上固定连接有光触媒净化装置,所述光触媒净化装置与所述控制器电连接;
[0039]所述机壳侧壁的外侧面上固定连接有VOC浓度传感器,所述VOC浓度传感器与所述控制器电连接;所述控制器用于实时接收所述VOC浓度传感器检测到的VOC浓度值,且将该浓度值与预设VOC浓度值进行比较,当检测到的VOC浓度值大于预设VOC浓度值时,控制所述光触媒净化装置启动运行。
[0040]采用上述进一步方案的有益效果是:通过设置VOC浓度传感器和光触媒净化装置,可当室内VOC浓度超标后,自动控制新风装置启动运行,十分方便。
[0041]进一步,所述风机为变速风机。
[0042]采用上述进一步方案的有益效果是:通过采用变速风机,可满足不同运行模式对风量风压的要求。
附图说明
[0043]图1为本实施例的立体结构示意图;
[0044]图2为本实施例的内部连接关系图。
[0045]附图中,各标号所代表的部件列表如下:
[0046] 1、室内机;11、机壳;111、空调出风口;112、回风口;12、控制器;13、蒸发器;14、接水盘;15、风机;151、风机出风口; 16、冷媒管;2、室外机;3、隔墙;31、通孔;4、新风装置;41、保温管;411、进风口; 412、排风口; 42、轴流风机;43、电动调节阀;44、电加热装置;5、光触媒净化装置;6、湿度调节装置。
具体实施方式
[0047]以下结合附图对本发明的原理和特征进行描述,所举实例只用于解释本发明,并非用于限定本发明的范围。
[0048]如图1所示,本实施例的一种立柜式多功能家用空调器,包括:
[0049]室内机I,室内机I设置在室内;
[0050]室外机2,室外机2设置在室外,室外机2通过冷媒管16与室内机I相连,室内和室外由隔墙3隔开;
[0051 ] 湿度调节装置6,湿度调节装置6固定在室内机I内部且与之相连,用于对室内空气湿度进行监测并调节。通过在空调器内设置湿度调节装置,可对室内的空气湿度进行有效调节,防止室内过于干燥而不利于人体健康。
[0052]如图2所示,本实施例的室内机I包括:
[0053] 机壳11,机壳11的侧壁上开设有空调出风口 111;
[0054]控制器12,控制器12设置在机壳11侧壁的外侧面上,机壳11侧壁的外侧面上设有控制面板,可通过控制面板对控制器发送控制命令;控制器12位于空调出风口 111的下方;
[0055]蒸发器13,蒸发器13固定设置在机壳11侧壁的内侧面上且斜向布置;
[0056]接水盘14,接水盘14固定在室内机I侧壁的内侧面上且位于蒸发器13的下端;
[0057 ] 风机15,风机15为可变速风机;风机15的上端开设有风机出风口 151,风机出风口151位于蒸发器13的下方,风机15与控制器12电连接;湿度调节装置6位于风机出风口 151和蒸发器13之间且与控制器12电连接。通过将湿度调节装置设置在风机出风口与蒸发器之间,可将加湿后的空气通过风机直接吹送至空调出风口处。
[0058]如图2所示,本实施例的湿度调节装置6包括:
[0059] 湿度传感器,湿度传感器固定在机壳11的侧壁的外侧面上,湿度传感器与控制器12相连;
[0060] 加湿器,加湿器位于风机出风口 151和蒸发器13之间且与控制器12电连接;加湿器为超声波加湿器;超声波加湿是利用压电陶瓷所固有超声波震荡特点,通过一定的震荡电路手段与压电陶瓷固有震荡频率产生共振,直接将压电陶瓷接触的液体雾化呈1μπι-3μπι的微小液滴,然后通过风动装置,将水雾扩散到空气中;加湿器具体由储水箱、超声波发生器、微型风扇和控制电路组成;
[0061]水位报警器,水位报警器固定在加湿器的内壁上且与控制器12电连接;通过在加湿器内设置水位报警器,可避免加湿器在水量不足的时候进行加湿,防止损坏加湿器;
[0062]控制器12用于接收湿度传感器检测到的室内湿度值,并将室内湿度值与预设湿度值进行对比,当室内湿度值小于预设湿度值时,控制器12控制加湿器启动运行,当室内湿度值不小于预设湿度值时,控制器控制加湿器停止运行;当加湿器内的水位低于预设水位时,控制器12控制水位报警器进行声控报警。
[0063] 如图2所示,本实施例还包括新风装置4,新风装置4包括:
[0064]电加热装置44,电加热装置44固定在蒸发器13的一侧面上且与控制器12相连;
[0065] 保温管41,保温管41的两端分别开设有进风口411和排风口412;隔墙3上开设有通孔31,保温管41插接在通孔31内;排风口 412位于机壳11内部,进风口 411位于室外;保温管41是一根直径100mm-150mm的金属软管;
[0066]轴流风机42,轴流风机42固定在保温管41的内壁上;轴流风机42与控制器12电连接;
[0067]电动调节阀43,电动调节阀43固定在保温管41的内壁上;电动调节阀43与控制器12电连接;
[0068] 机壳11上开设有回风口 112,回风口 112位于空调出风口 111的下方,机壳11的内侧壁上固定有过滤器,过滤器将回风口 112覆盖住,排风口 412与回风口 112相对布置。
[0069] 过滤器依次包括中效过滤器和亚高效过滤器,亚高效过滤器的一侧面固定在机壳11的内侧壁上,其另一侧面与中效过滤器固定相连。中效过滤器的滤料为无纺布,亚高效过滤器的滤料为超细玻璃纤维。中效过滤器对1μπι-5μπι粒子的过滤效率为60%~95%;亚高效过滤器对0.5μπι的粒子的过滤效率为99.9%。
[0070]本实施例的机壳11侧壁的外侧面上固定连接有二氧化碳浓度传感器,二氧化碳浓度传感器与控制器12电连接;
[0071]控制器12用于实时接收二氧化碳浓度传感器检测到的室内二氧化碳浓度值,且将室内二氧化碳浓度值与预设二氧化碳浓度值进行比较,当室内二氧化碳浓度值大于预设二氧化碳浓度值时,控制电动调节阀和轴流风机启动运行。
[0072]本实施例的机壳11的内部的底壁上固定连接有光触媒净化装置,光触媒净化装置与控制器12电连接;光触媒净化装置是一种以纳米级二氧化钛为代表的具有光催化功能的光半导体材料的总称,是当前治理室内环境污染的最理想材料;光触媒在波长为388nm以下的紫外线照射下,会产生类似光合作用的光催化反应,产生出氧化能力极强的自由氢氧基和活性氧,具有很强的光氧化还原功能,可氧化分解各种有机化合物和部分无机物,能破坏细菌的细胞膜和固化病毒的蛋白质,可杀灭细菌和分解有机污染物,把有机污染物分解成无污染的水和二氧化碳,因而具有极强的杀菌、除臭、防霉、防污自洁、净化空气功能。
[0073] 机壳11侧壁的外侧面上固定连接有VOC浓度传感器,VOC浓度传感器与控制器电连接;控制器12用于实时接收VOC浓度传感器检测到的VOC浓度值,且将该浓度值与预设VOC浓度值进行比较,当检测到的VOC浓度值大于预设VOC浓度值时,控制光触媒净化装置启动运行。
[0074]本实施例的工作过程为:打开空调器的启动开关,空调器开始按照空调模式运行,当需要对室内进行换风时,可手动打开轴流风机和电动调节阀,通过保温管将室外的空气抽到室内进行换风。当室内二氧化碳浓度超标时,控制器自动控制轴流风机和电动调节阀启动运行,实现对室内换风;当室内VOC浓度超标时,控制器也会自动控制光触媒净化装置启动运行,实现对室内换风。
[0075]以上所述仅为本发明的较佳实施例,并不用以限制本发明,凡在本发明的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本发明的保护范围之内。
Claims (10)
1.一种立柜式多功能家用空调器,其特征在于,包括: 室内机(I),所述室内机(I)设置在室内;室外机(2),所述室外机(2)设置在室外,所述室外机(2)通过冷媒管(16)与所述室内机(I)相连,所述室内和室外由隔墙(3)隔开; 湿度调节装置(6),所述湿度调节装置(6)固定在所述室内机(I)内部且与所述室内机电连接,用于对室内空气湿度进行监测并调节。
2.根据权利要求1所述一种立柜式多功能家用空调器,其特征在于,所述室内机(I)包括: 机壳(11),所述机壳(11)的侧壁上开设有空调出风口(111); 控制器(12),所述控制器(12)设置在所述机壳(11)侧壁的外侧面上,所述控制器(12)位于所述空调出风口(111)的下方; 蒸发器(13),所述蒸发器(13)固定设置在所述机壳(11)侧壁的内侧面上且斜向布置;接水盘(14),所述接水盘(14)固定在所述室内机(I)侧壁的内侧面上且位于所述蒸发器(13)的下端; 风机(15),所述风机(15)的上端开设有风机出风口(151),所述风机出风口(151)位于所述蒸发器(13)的下方,所述风机(15)与所述控制器(12)电连接;所述湿度调节装置(6)位于所述风机出风口(151)和所述蒸发器(13)之间且与所述控制器(12)电连接。
3.根据权利要求2所述一种立柜式多功能家用空调器,其特征在于,所述湿度调节装置(6)包括: 湿度传感器,所述湿度传感器固定在所述机壳(II)的侧壁的外侧面上,所述湿度传感器与所述控制器(12)相连; 加湿器,所述加湿器位于所述风机出风口(151)和所述蒸发器(13)之间且与所述控制器(12)电连接;水位报警器,所述水位报警器固定在所述加湿器的内壁上且与所述控制器(12)电连接; 所述控制器(12)用于接收所述湿度传感器检测到的室内湿度值,并将所述室内湿度值与预设湿度值进行对比,当所述室内湿度值小于预设湿度值时,控制器(12)控制加湿器启动运行,当所述室内湿度值不小于预设湿度值时,控制器(12)控制加湿器停止运行;当所述加湿器内的水位低于预设水位时,所述控制器(12)控制所述水位报警器进行声控报警。
4.根据权利要求3所述一种立柜式多功能家用空调器,其特征在于,所述加湿器为超声波加湿器。
5.根据权利要求2-4任一项所述一种立柜式多功能家用空调器,其特征在于,还包括: 电加热装置(44),所述电加热装置(44)固定在所述蒸发器(13)的一侧面上且与所述控制器(12)相连; 保温管(41),所述保温管(41)的两端分别开设有进风口(411)和排风口(412);所述隔墙(3)上开设有通孔(31),所述保温管(41)插接在所述通孔(31)内;所述排风口(412)位于所述机壳(11)内部,所述进风口( 411)位于室外;轴流风机(42),所述轴流风机(42)固定在所述保温管(41)的内壁上;所述轴流风机(42)与所述控制器(12)电连接; 电动调节阀(43),所述电动调节阀(43)固定在所述保温管(41)的内壁上;所述电动调节阀(43)与所述控制器(12)电连接; 所述机壳(11)上开设有回风口(112),所述回风口(112)位于所述空调出风口(111)的下方,所述机壳(11)的内侧壁上固定有过滤器,所述过滤器将所述回风口(112)覆盖住,所述排风口(412)与所述回风口(112)相对布置。
6.根据权利要求5所述一种立柜式多功能家用空调器,其特征在于,所述过滤器依次包括中效过滤器和亚高效过滤器,所述亚高效过滤器的一侧面固定在所述机壳(11)的内侧壁上,其另一侧面与所述中效过滤器固定相连。
7.根据权利要求6所述一种立柜式多功能家用空调器,其特征在于,所述中效过滤器的滤料为无纺布,所述亚高效过滤器的滤料为超细玻璃纤维。
8.根据权利要求6或7所述一种立柜式多功能家用空调器,其特征在于,所述机壳(11)侧壁的外侧面上固定连接有二氧化碳浓度传感器,所述二氧化碳浓度传感器与所述控制器(12)电连接; 所述控制器(12)用于实时接收所述二氧化碳浓度传感器检测到的室内二氧化碳浓度值,且将所述室内二氧化碳浓度值与预设二氧化碳浓度值进行比较,当所述室内二氧化碳浓度值大于预设二氧化碳浓度值时,控制所述电动调节阀(43)和轴流风机(42)启动运行。
9.根据权利要求8所述一种立柜式多功能家用空调器,其特征在于,所述机壳(11)的内部的底壁上固定连接有光触媒净化装置(5),所述光触媒净化装置(5)与所述控制器(12)电连接; 所述机壳(I I)侧壁的外侧面上固定连接有VOC浓度传感器,所述VOC浓度传感器与所述控制器(12)电连接;所述控制器(12)用于实时接收所述VOC浓度传感器检测到的VOC浓度值,且将该浓度值与预设VOC浓度值进行比较,当检测到的VOC浓度值大于预设VOC浓度值时,控制所述光触媒净化装置(5)启动运行。
10.根据权利要求9所述一种立柜式多功能家用空调器,其特征在于,所述风机(15)为变速风机。
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