CN2641514Y - 新风换气节能型单元式空调机 - Google Patents
新风换气节能型单元式空调机 Download PDFInfo
- Publication number
- CN2641514Y CN2641514Y CN 03277972 CN03277972U CN2641514Y CN 2641514 Y CN2641514 Y CN 2641514Y CN 03277972 CN03277972 CN 03277972 CN 03277972 U CN03277972 U CN 03277972U CN 2641514 Y CN2641514 Y CN 2641514Y
- Authority
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- China
- Prior art keywords
- air
- new wind
- energy
- discharge area
- air conditioner
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Expired - Fee Related
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- 238000009423 ventilation Methods 0.000 claims description 11
- 239000005030 aluminium foil Substances 0.000 claims description 7
- 238000010521 absorption reaction Methods 0.000 claims description 3
- 238000006073 displacement reaction Methods 0.000 claims description 3
- 238000000034 method Methods 0.000 claims description 3
- 230000001105 regulatory Effects 0.000 claims description 3
- 230000000694 effects Effects 0.000 abstract description 4
- 238000005057 refrigeration Methods 0.000 abstract description 2
- 238000004378 air conditioning Methods 0.000 description 10
- 238000011084 recovery Methods 0.000 description 7
- 229910052782 aluminium Inorganic materials 0.000 description 2
- XAGFODPZIPBFFR-UHFFFAOYSA-N aluminum Chemical compound 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[Al] XAGFODPZIPBFFR-UHFFFAOYSA-N 0.000 description 2
- UHOVQNZJYSORNB-UHFFFAOYSA-N benzene Chemical compound 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Abstract
本实用新型公开了一种能够回收室内排风能量的具有节能功能的新风换气节能型单元式空调器,它包括标准单元式空调机和置换新风和回收能量的能量回收装置,室外新风通过能量回收装置后与标准单元式空调机的空气入口相通,室内空气经过能量回收装置后排出到室外。本实用新型在全年多气候、多工况的情况下向室内设备提供制冷量,具有显著节能效果。该类机组可广泛地应用于空调区域需要新风的场合。
Description
一、技术领域本实用新型涉及一种空调机,具体地说是一种具有节能功能的新风换气节能型单元式空调器。
二、背景技术
在空调区域,由于人员活动和设备的运行,室内空气品质不断下降,如CO2、甲醛、苯等有害物质的浓度升高,会严重的影响室内人员的健康,为了保证空调区域的空气质量保障人员的安全,一般需要向室内提供一定数量的室外新风,同时向室外排出同样数量的室内污浊的空气,维持房间有害物质的浓度在安全的范围内。
在夏季,空调区域的空气温度比室外空气(新风)的温度要低很多,特别是在盛夏的时候,排出的空气将带走一定量的冷负荷;在冬季,空调区域的空气温度比室外空气(新风)的温度要高很多,排出的空气将带走一定量的热负荷。目前的空调机均采用直接向室外排出室内污浊的空气,同时直接向室内提供同样数量的室外新风,它的缺点是:1、能耗高,室外温度很高或很低的空气通过空调机后进入室内,要达到室内适宜的温度,需消耗大量的电能;2、设备易损坏,由于空调机长期处于高负荷运转,因而容易老化、损坏;3、空调区域内的空气质量差,为节约能源,势必要减少室内、室外空气交换量,因而使室内空气质量下降。
三、发明内容
本实用新型的目的是提供一种能够回收室内排风能量的具有节能功能的新风换气节能型单元式空调器。
本实用新型的目的是这样来实现的:一种新风换气节能型单元式空调机,包括标准单元式空调机,所述标准单元式空调机具有将调节后的空气送入室内的空气出口和吸收外部空气的空气入口,其特征是:它还包括置换新风和回收能量的能量回收装置,室外新风通过能量回收装置后与标准单元式空调机的空气入口相通,室内空气经过能量回收装置后排出到室外。
在能量回收装置中,为使回收能量的效果达到最佳,所述能量回收装置包括由外壳、隔板和热交换器共同组成的室内空气排入区、室内空气排出区、新风排入区和新风排出区;所述室内空气排入区和室内空气排出区与新风排入区和新风排出区互不相通;所述室内空气排入区和新风排入区通过热交换器分别与室内空气排出区和新风排出区相通;所述室内空气排入区的外壳上设有室内空气排入口,新风排入区的外壳上设有新风进气口;所述新风排出区与标准单元式空调机的空气入口相通,室内空气排出区与室外相通。
在室内空气向室外排出和室外空气向室内流进过程中,为使室外、室内空气发生能量交换,在能量回收装置中设置了热交换器,所述热交换器包括层面隔板和换热板;所述层面隔板互相平行且间隔排列并和设置在层面隔板之间的换热板共同围成位于不同层面且交错排列的排风通道和新风通道;所述排风通道与室内空气排入区和室内空气排出区相通,新风通道与新风排入区和新风排出区相通。
为最大限度地实现热交换,所述排风通道和新风通道是由换热板在层面隔板之间呈波纹状排列组成,层面隔板和换热板是由超薄铝箔制成;铝箔的厚度为0.05mm,波纹间距为2~5mm。
为便于安装,所述层面隔板可以是正方形,排风通道和新风通道位于不同层面且互相垂直排列。层面隔板也可采用其它形状,在安装时要保证室内空气排入区和室内空气排出区与新风排入区和新风排出区互不相通。
与现有技术相比,本实用新型由两个模块化结构组合而成,一个模块为标准的单元式空调机,另一模块为新风换气热回收装置,该类机组具有除标准的温湿度控制的功能外,还具有置换新风且回收排风能量的功能,不仅保持了空气区域内空气舒适性,还保障了其空气的卫生指标,同时又能为用户节省一定的能耗。新风经过换热后,通过空气入口进入标准单元式空调机内,在内部与空调系统的回风混合后送入空调房间。换热后的排风直接排向机组外部,不再参与空调循环。它的优点是:1、能节约能源,将室内排出空气的能量加以回收利用;2、设备使用寿命长;3、空调区域内的空气质量好,室内、室外空气流通充分。
四、附图说明
图1是本实用新型结构示意图;图2是本实用新型所述热交换器结构示意图。
五、具体实施方式
一种本实用新型所述的新风换气节能型单元式空调器,包括标准单元式空调机1和能量回收装置4。在标准单元式空调机1上设有将调节后的空气送入室内的空气出口2和吸收外部空气的空气入口3。能量回收装置4包括外壳5、隔板6和方形热交换器7,隔板6位于外壳5的中部且与方形热交换器7的两个对角相连,热交换器7位于外壳5内的中心位置,另外两个对角与外壳5相连,外壳5、隔板6和方形热交换器7共同组成室内空气排入区8、室内空气排出区9、新风排入区10和新风排出区11;室内空气排入区8和室内空气排出区9与新风排入区10和新风排出区11互不相通;室内空气排入区8和新风排入区10通过热交换器7分别与室内空气排出区9和新风排出区11相通;室内空气排入区8的外壳5上设有室内空气排入口12,新风排入区10的外壳5上设有新风进气口13;新风排出区11与标准单元式空调机1的空气入口3相通,室内空气排出区9与室外相通。在使用时,外部空气(新风)由新风进气口13进入到新风排入区10,再经过热交换器7到达新风排出区11,在热交换器7中与从室内空气排入口12进入,由室内空气排入区8到室内空气排出区9的空气实现能量转换,能量置换后的新风通过空气入口3进入到标准单元式空调机1中,在内部与空调系统的回风混合后送入空调房间。换热后的排风通过室内空气排出区9直接排向机组外部。
方形热交换器7的结构和工作原理如下:在图2中,14为层面铝箔隔板,15为铝箔换热板,16为排风通道,17为新风通道,新风、排风经过互不相通的层面,通过层面铝箔隔板14的传热性能使新风吸收了排风中的能量,热回收率可达到60-70%以上,热回收效率高,节能效果好。超薄铝箔的换热系数高,铝箔的厚度为0.05mm,波纹间距2~5mm,蓄热能力强。由于新风通道17和排风通道16不互通,使新风不会受到排风污浊空气的污染,能保证房间的空气的清新、清洁和健康。
在夏季,新风、排风经过互不相通的层面,通过层面铝箔隔板14的传热性能使新风吸收了排风中的能量,根据实验可以得知:当室内温度为26℃,而室外新风的温度为32℃时,通过能量回收装置4后,新风的温度可降到27.8℃,而排风的温度上升到30.2℃,这样可达到60-70%以上的热回收率。降温后的新风通过空气入口3进入到标准单元式空调机1中,在内部与空调系统的回风混合后送入空调房间。换热后的排风通过室内空气排出区9直接排向机组外部。
热回收率计算公式:N=TW-TRTW-TN×100%]]>其中:TW=室外温度TN=室内温度TR=新风出口温度(热回收后温度)N=热回收率在上例中:N=(32-27.8)/(32-26)*100%=70%在冬季,当室内温度为20℃,而室外新风的温度为0℃时,通过能量回收装置4后,新风的温度可到上升到14℃,而排风的温度下降到6℃,同样也可达到60-70%以上的热回收率。
在本例中:N=(0-14)/(0-20)*100%=70%。
Claims (6)
1.一种新风换气节能型单元式空调机,包括标准单元式空调机(1),所述标准单元式空调机(1)具有将调节后的空气送入室内的空气出口(2)和吸收外部空气的空气入口(3),其特征是:它还包括置换新风和回收能量的能量回收装置(4),室外新风通过能量回收装置(4)后与标准单元式空调机(1)的空气入口(3)相通,室内空气经过能量回收装置(4)后排出到室外。
2.根据权利要求1所述的新风换气节能型单元式空调机,其特征是:所述能量回收装置(4)包括由外壳(5)、隔板(6)和热交换器(7)共同组成的室内空气排入区(8)、室内空气排出区(9)、新风排入区(10)和新风排出区(11);所述室内空气排入区(8)和室内空气排出区(9)与新风排入区(10)和新风排出区(11)互不相通;所述室内空气排入区(8)和新风排入区(10)通过热交换器(7)分别与室内空气排出区(9)和新风排出区(11)相通;所述室内空气排入区(8)的外壳(5)上设有室内空气排入口(12),新风排入区(10)的外壳(5)上设有新风进气口(13);所述新风排出区(11)与标准单元式空调机(1)的空气入口(3)相通,室内空气排出区(9)与室外相通。
3.根据权利要求2所述的新风换气节能型单元式空调机,其特征是:所述热交换器(7)包括层面隔板(14)和换热板(15);所述层面隔板(14)互相平行且间隔排列并和设置在层面隔板(14)之间的换热板(15)共同围成位于不同层面且交错排列的排风通道(16)和新风通道(17);所述排风通道(16)与室内空气排入区(8)和室内空气排出区(9)相通,新风通道(17)与新风排入区(10)和新风排出区(11)相通。
4.根据权利要求3所述的新风换气节能型单元式空调机,其特征是:所述排风通道(16)和新风通道(17)是由换热板(15)在层面隔板(14)之间呈波纹状排列组成。
5.根据权利要求3所述的新风换气节能型单元式空调机,其特征是:所述层面隔板(14)和换热板(15)是由铝箔制成。
6.根据权利要求3或4所述的新风换气节能型单元式空调机,其特征是:所述层面隔板(14)是正方形,排风通道(16)和新风通道(17)位于不同层面且互相垂直排列。
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Cited By (4)
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CN103884054A (zh) * | 2014-04-13 | 2014-06-25 | 吉首大学 | 新风空调系统 |
CN105157111A (zh) * | 2015-09-24 | 2015-12-16 | 无锡同方人工环境有限公司 | 被动房专用模块化能源环境机组 |
CN105371413A (zh) * | 2015-12-10 | 2016-03-02 | 远大空品科技有限公司 | 一种节能新风机 |
CN106016563A (zh) * | 2015-07-25 | 2016-10-12 | 张跃 | 一种节能新风机 |
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Cited By (6)
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CN103884054A (zh) * | 2014-04-13 | 2014-06-25 | 吉首大学 | 新风空调系统 |
CN103884054B (zh) * | 2014-04-13 | 2016-04-13 | 吉首大学 | 新风空调系统 |
CN106016563A (zh) * | 2015-07-25 | 2016-10-12 | 张跃 | 一种节能新风机 |
CN105157111A (zh) * | 2015-09-24 | 2015-12-16 | 无锡同方人工环境有限公司 | 被动房专用模块化能源环境机组 |
CN105157111B (zh) * | 2015-09-24 | 2019-03-05 | 无锡同方人工环境有限公司 | 被动房专用模块化能源环境机组 |
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