WO2017088797A1 - 独立控温双进气通道新风空调系统 - Google Patents
独立控温双进气通道新风空调系统 Download PDFInfo
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- WO2017088797A1 WO2017088797A1 PCT/CN2016/107125 CN2016107125W WO2017088797A1 WO 2017088797 A1 WO2017088797 A1 WO 2017088797A1 CN 2016107125 W CN2016107125 W CN 2016107125W WO 2017088797 A1 WO2017088797 A1 WO 2017088797A1
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- air
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- tempered
- fresh air
- conditioning system
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F3/00—Air-conditioning systems in which conditioned primary air is supplied from one or more central stations to distributing units in the rooms or spaces where it may receive secondary treatment; Apparatus specially designed for such systems
- F24F3/12—Air-conditioning systems in which conditioned primary air is supplied from one or more central stations to distributing units in the rooms or spaces where it may receive secondary treatment; Apparatus specially designed for such systems characterised by the treatment of the air otherwise than by heating and cooling
- F24F3/14—Air-conditioning systems in which conditioned primary air is supplied from one or more central stations to distributing units in the rooms or spaces where it may receive secondary treatment; Apparatus specially designed for such systems characterised by the treatment of the air otherwise than by heating and cooling by humidification; by dehumidification
- F24F3/147—Air-conditioning systems in which conditioned primary air is supplied from one or more central stations to distributing units in the rooms or spaces where it may receive secondary treatment; Apparatus specially designed for such systems characterised by the treatment of the air otherwise than by heating and cooling by humidification; by dehumidification with both heat and humidity transfer between supplied and exhausted air
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- 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
- F24F11/70—Control systems characterised by their outputs; Constructional details thereof
- F24F11/72—Control systems characterised by their outputs; Constructional details thereof for controlling the supply of treated air, e.g. its pressure
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- 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
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F3/00—Air-conditioning systems in which conditioned primary air is supplied from one or more central stations to distributing units in the rooms or spaces where it may receive secondary treatment; Apparatus specially designed for such systems
- F24F3/06—Air-conditioning systems in which conditioned primary air is supplied from one or more central stations to distributing units in the rooms or spaces where it may receive secondary treatment; Apparatus specially designed for such systems characterised by the arrangements for the supply of heat-exchange fluid for the subsequent treatment of primary air in the room units
- F24F3/08—Air-conditioning systems in which conditioned primary air is supplied from one or more central stations to distributing units in the rooms or spaces where it may receive secondary treatment; Apparatus specially designed for such systems characterised by the arrangements for the supply of heat-exchange fluid for the subsequent treatment of primary air in the room units with separate supply and return lines for hot and cold heat-exchange fluids i.e. so-called "4-conduit" system
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F7/00—Ventilation
- F24F7/04—Ventilation with ducting systems, e.g. by double walls; with natural circulation
- F24F7/06—Ventilation with ducting systems, e.g. by double walls; with natural circulation with forced air circulation, e.g. by fan positioning of a ventilator in or against a conduit
- F24F7/08—Ventilation with ducting systems, e.g. by double walls; with natural circulation with forced air circulation, e.g. by fan positioning of a ventilator in or against a conduit with separate ducts for supplied and exhausted air with provisions for reversal of the input and output systems
Definitions
- the invention relates to the field of electrical appliances and ventilation equipment.
- the fresh air system is an independent air treatment system consisting of a fresh air ventilator and a pipe accessory.
- the fresh air ventilator filters and purifies the outdoor fresh air, and delivers it to the room through the pipeline to discharge the indoor dirty and low oxygen content air. outdoor.
- the existing fresh air system has a one-way flow fresh air system and a two-way flow fresh air system.
- the one-way flow fresh air system is a simple fresh air system.
- the one-way ventilation fan sends fresh air to a designated area in the room, and discharges the dirty air from the door and window joints; or discharges the dirty air from the indoor designated area to the outside. Inhale fresh air from the door and window to the room.
- the two-way fresh air system is more commonly used in heat exchangers. It is a more formal fresh air system. It has both air inlet channels and exhaust air passages, which can reduce the interference of indoor undesired temperature on indoor temperature and reduce the loss of indoor ideal temperature energy. Has a certain energy saving effect.
- the main functions of the existing fresh air systems are to achieve the circulation of air.
- the air that is sent into the space to be tempered is a single temperature, and all of them are uniformly temperature-controlled, and there is no individualized demand for each air circulation space.
- the user's comfort is not strong, and there are also shortcomings of resource waste.
- an independent temperature-controlled dual air intake channel fresh air air conditioning system including a space to be tempered
- At least two intake passages for conveying different temperature air are connected into each space to be tempered;
- the channel control device is provided with channel control devices in any space to be tempered, and one of the intake channels is selected for opening.
- the channel control device selects to open the lowest air temperature in each intake channel
- the channel control device selects to open the highest temperature of the conveying air in each of the intake passages;
- the channel control device selects to open the temperature difference between the temperature of the conveying air and the actual temperature in each of the intake passages.
- the independent temperature-controlled dual intake air fresh air air conditioning system at least one of the intake passages is an exchange air input passage processed by a heat exchanger.
- the exchange air is supplied into the air input passage to be outdoor air after heat exchange with the air discharged from the space to be tempered by the heat exchanger.
- the independent temperature-controlled dual intake air fresh air air conditioning system as described above further includes a fresh air direct passage, an exchange air discharge passage, and a heat exchanger;
- the fresh air direct passage is for directly conveying outdoor air (without passing through a heat exchanger without heat exchange); and the exchange air discharge passage is for discharging air in the space to be tempered;
- the heat exchanger is disposed on the exchange air input passage and the exchange air discharge passage;
- the channel control device is disposed on the fresh air direct passage and the exchange air input passage.
- the fresh air direct transmission channel, the discharge end of the exchange air input channel, and the temperature to be tempered space are respectively provided with temperature sensors for collecting temperature data, and each of the temperature sensors will collect the temperature.
- the data is passed to the controller.
- the independent temperature-controlled dual intake air fresh air air conditioning system includes an electronically controlled three-way valve, and the electronically controlled three-way valve is disposed at an intersection of two intake passages for conveying air of different temperatures.
- the channel control device includes a first electronically controlled valve and a second electronically controlled valve, wherein the first electrically controlled valve and the second electrically controlled valve are respectively mounted on the Two air intake channels that deliver different temperature air.
- the independent temperature-controlled dual intake air fresh air air conditioning system, the first electric control valve and the second electric control valve can be simultaneously closed.
- each of the space to be tempered is connected to two or more air input channels having different temperatures, for example, one is a fresh air straight channel to send outdoor air, and the other is
- the exchange air input channel feeds the air processed by the heat exchanger, and each channel to be tempered has a channel control device to select and open different intake channels, which can better meet the requirements of air circulation.
- Different personalization needs of the space to be tempered users can open high-temperature or low-temperature intake channels according to their actual needs, enhance the comfort of each space, make full use of the air resources in the natural environment, and reduce energy. Consumption.
- Figure 1 is a schematic view of the present invention
- FIG. 2 is a schematic view showing the use of two electric control valves for the channel control device in the invention
- the logo in the figure is as follows:
- the independent temperature-controlled dual-intake air fresh air-conditioning system has at least two intake channels for conveying different temperature air in each space to be tempered 4; the channel control device 5, any space to be tempered 4 is provided with a channel control device 5 for selecting one of the intake channels to be opened. Generally, at least two spaces to be tempered 4 are included.
- the channel control device 5 selects to open the lowest temperature of the conveying air in each of the intake passages; when the actual temperature of the space to be tempered 4 is lower than required When the temperature is set, the channel control device 5 selects to open the highest temperature of the delivery air in each intake channel; when the actual temperature of the temperature to be tempered space 4 is equal to the required set temperature, the channel control device 5 selects to open the respective intake channels.
- the temperature difference between the medium conveying air temperature and the actual temperature is small.
- the independent air temperature control dual air intake channel fresh air air conditioning system greatly enhances the temperature regulation function of the fresh air system while realizing the function of air circulation.
- Each channel to be tempered has channel control equipment to select different air input channels. Better meet the individual needs of different space to be tempered, and make full use of the air resources in the natural environment to reduce energy consumption.
- At least one of the intake passages is an exchange air input passage 2 that is processed by a heat exchanger.
- the input of the exchange air input passage 2 is the air obtained by heat exchange of the outdoor air and the indoor air through the heat exchanger.
- the intake passages are two, one for the fresh air straight passage 1 and the other for the exchange air input passage 2. Also included is an exchange air discharge passage 3, and a heat exchanger 6; the heat exchanger 6 is disposed on the exchange air input passage 2 and the exchange air discharge passage 3 for exchanging heat between the outdoor air and the exhaust air; the fresh air is straight
- the conveying passage 1 is for directly conveying the outdoor air that has not been heat exchanged; the exchange air discharge passage 3 is for discharging the air in the room; and the exchange air input passage 2 is conveyed in the heat exchanger 6 Acting under the action of exchanging the exhaust air in the exhaust air discharge passage 3
- the outdoor air after the change; the passage control device 5 is disposed on the fresh air straight passage 1 and the exchange air input passage 2.
- the controller further includes a temperature control device for setting a temperature to be adjusted in the space to be tempered, and the controller is connected to the channel control device 5; the fresh air direct channel 1, the exchange A temperature sensor for collecting temperature data is respectively disposed in the discharge end of the air input channel 2 and the space to be tempered 4, and each of the temperature sensors transmits the collected temperature data to the controller.
- the controller commands the channel control device 5 according to the relationship between the temperature of the air in the fresh air straight-through channel 1, the temperature of the air in the exchange air input channel 2, the temperature in the space to be tempered 4, and the set temperature.
- One of the fresh air direct transmission channel 1 and the exchange air input channel 2 is selected for opening.
- a temperature sensor is disposed on each of the two intake ducts entering the space to be tempered 4 for collecting the intake air temperature finally sent into the room, and each temperature to be tempered space 4 is provided for collecting the real-time indoor temperature, the user Set an ideal set temperature as needed, so there are a total of four temperature parameters for comparison.
- the controller commands the channel control device 5 to open the air temperature between the fresh air straight channel 1 and the exchange air input channel 2; when the temperature to be tempered is 4 When the temperature is lower than the set temperature, the controller commands the channel control device 5 to open the air temperature between the fresh air straight channel 1 and the exchange air input channel 2; when the temperature in the space to be tempered 4 is equal to the set temperature
- the controller commands the channel control device 5 to open the fresh air direct transmission channel 1 and the exchange air input channel 2 to have a small temperature difference between the air temperature and the actual temperature.
- a total intake passage is included, and a filter tank 7 is disposed on the total intake passage. After the air is filtered, the air is divided into two parts, one part enters the exchange air input passage 2, and the other part enters the fresh air straight line. Channel 1.
- the advantage of this is that the air in the two intake passages is uniformly filtered, the process is simple, the system structure is simplified, and the cost is saved.
- the channel control device 5 shown in FIG. 1 comprises an electronically controlled three-way valve, which is connected to the inlet of each air inlet to be tempered space 4, and is converge to a terminal air inlet through an electronically controlled three-way valve.
- the electronically controlled three-way valve has two inlet ends and one outlet end, and the two inlet ends are respectively connected with a fresh air direct passage and an exchange air input passage, the outlet end is connected with the space to be tempered, and the electronically controlled three-way valve is at two inlets. Switching between the ends, in two air inlet pipes with different temperatures, selecting a moderate temperature to turn it on, so that fresh air with strong user comfort is sent to each space to be tempered 4 .
- the channel control device 5 shown in FIG. 2 includes a first electric control valve and a second electric control valve.
- the first electric control valve is installed on the fresh air straight passage, and the second electric control valve is installed on the exchange air input passage.
- Two electronically controlled valves are used to control the opening or closing of the two channels.
- the channel control device is provided with channel control devices in any space to be tempered, and one of the intake channels is selected for opening.
- the channel control device adopts the first electric control valve and the second electric control valve, in addition to the foregoing use, the first electric control valve can close the fresh air direct transmission channel when the fresh air air conditioning system is not needed, and the second electronic control The valve closes the exchange air input channel, which reduces energy consumption.
- the space to be tempered 4 can refer to one room or one space, which can be consistent with the set temperature.
- the study room and the living room generally the temperature required by the two is the same, then the two can be set as a room to be tempered 4; the bedroom and the study, the temperature requirements of the two will be different, then the two For a space to be tempered 4 .
- the example shows that the living room setting temperature is 26 degrees, the actual indoor temperature is 31 degrees, the temperature of the exchange air input channel 2 is 30 degrees, and the temperature of the fresh air direct transmission channel 1 is 27, then the controller will command the channel control device. 5 Turn on the fresh air straight channel 1.
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Abstract
一种独立控温双进气通道新风空调系统,包括待调温空间(4),每个待调温空间(4)都接入至少两条温度不同的进气通道,每个待调温空间(4)都设置有通道控制设备(5),用于选择开通不同的进气通道,选择的标准在于,如果设定温度高于室内温度,那么选择温度高的进气通道,如果设定温度低于室内温度,那么选择温度低的进气通道。在实现空气流通的功能的同时,大大加强了新风系统的调温作用。
Description
本发明涉及电器及通风设备领域。
新风系统是由新风换气机及管道附件组成的一套独立空气处理系统,新风换气机将室外新鲜气体经过过滤、净化,通过管道输送到室内,将室内污浊、含氧量低的空气排出室外。
现有的新风系统,有单向流新风系统和双向流新风系统。单向流新风系统,是一种简易的新风系统,由单向换气风机向室内指定区域送入新鲜空气,从门窗缝排出室内的污浊空气;或从室内指定区域抽取污浊空气排向室外,从门窗缝向室内吸入新鲜空气。双向新风系统中较常采用换热器,是较为正式的新风系统,既有进风通道,又有排风通道,可以减少室外不理想温度对室内温度的干扰,减少室内理想温度能量的流失,具有一定的节能作用。
现有的这些新风系统主要功能都是为实现空气的流通,其送入待调温空间内的空气都是单一温度的,且都是统一控温,没有针对各个空气流通空间的个性化需求做出应对设置,造成用户舒适感不强,还存在资源浪费的缺点。
发明内容
为了克服现有技术的不足,本发明的目的在于提供一种能独立控温的新风系统。
为解决上述问题,本发明所采用的技术方案如下:独立控温双进气通道新风空调系统,包括待调温空间,
每个待调温空间内接入至少两条输送不同温度空气的进气通道;
通道控制设备,任一待调温空间内均设有通道控制设备,用于在各进气通道中选择其中一条进行开通。
如前所述的独立控温双进气通道新风空调系统,当待调温空间的实际温度高于所需的设定温度时,通道控制设备选择开通各进气通道中输送空气温度最低的;
当待调温空间的实际温度低于所需的设定温度时,通道控制设备选择开通各进气通道中输送空气温度最高的;
当待调温空间的实际温度等于所需的设定温度时,通道控制设备选择开通各进气通道中输送空气温度与实际温度温差小的。
如前所述的独立控温双进气通道新风空调系统,所述进气通道中至少有一条为经过热交换器处理的交换空气输入通道。所述交换空气输入通道内输送的是在热交换器的作用下与待调温空间内排出的空气做热交换之后的室外空气。
如前所述的独立控温双进气通道新风空调系统,还包括新鲜空气直输通道、交换空气排出通道、以及热交换器;
所述新鲜空气直输通道,用于直接输送室外空气(不经过热交换器,未经热交换);所述交换空气排出通道,用于将待调温空间内的空气排出;
所述热交换器设置于所述交换空气输入通道和所述交换空气排出通道上;
所述通道控制设备设置于所述新鲜空气直输通道与所述交换空气输入通道上。
如前所述的独立控温双进气通道新风空调系统,还包括控制器,所述控制器与所述通道控制设备连接;
所述新鲜空气直输通道、所述交换空气输入通道的排出端、所述待调温空间内分别设有用于采集温度数据的温度传感器,各所述温度传感器将采集的温
度数据传至控制器。
如前所述的独立控温双进气通道新风空调系统,所述通道控制设备包括电控三通阀,所述电控三通阀设置于两条输送不同温度空气的进气通道的交汇处。
如前所述的独立控温双进气通道新风空调系统,所述通道控制设备包括第一电控阀、第二电控阀,所述第一电控阀、第二电控阀分别安装于所述两条输送不同温度空气的进气通道上。
如前所述的独立控温双进气通道新风空调系统,所述第一电控阀、第二电控阀可同时关闭。
相比现有技术,本发明的有益效果在于:每一个待调温空间都接入了两个或以上温度不同的的空气输入通道,例如一个是新鲜空气直输通道送入室外空气,另一个交换空气输入通道送入的是经过热交换器处理的空气,每个待调温空间内都有通道控制设备来选择开通不同的进气通道,在实现空气流通需求的同时,能更好的满足不同待调温空间的个性化需求,用户可以根据自己的实际需要开通温度高的或者是温度低的进气通道,加强各空间的舒适性,充分利用了自然环境中的空气资源,更加减少能耗。
图1为本发明的示意图;
图2为分发明中通道控制设备采用两个电控阀的示意图;
图中标识说明如下:
1、新鲜空气直输通道;2、交换空气输入通道;3、交换空气排出通道;4、待调温空间;5、通道控制设备;6、热交换器;7、过滤箱。
下面结合附图和具体实施方式对本发明作进一步详细说明。
如图1-2所示的独立控温双进气通道新风空调系统,每个待调温空间4内接入至少两条输送不同温度空气的进气通道;通道控制设备5,任一待调温空间4内均设有通道控制设备5,用于在各进气通道中选择其中一条进行开通。一般包括至少两个待调温空间4。
当待调温空间4的实际温度高于所需的设定温度时,通道控制设备5选择开通各进气通道中输送空气温度最低的;当待调温空间4的实际温度低于所需的设定温度时,通道控制设备5选择开通各进气通道中输送空气温度最高的;当待调温空间4的实际温度等于所需的设定温度时,通道控制设备5选择开通各进气通道中输送空气温度与实际温度温差小的。
独立控温双进气通道新风空调系统,在实现空气流通的功能的同时,大大加强了新风系统的调温作用,每个待调温空间内都有通道控制设备来选择开通不同的空气输入通道,能更好的满足不同待调温空间的个性化需求,还充分利用了自然环境中的空气资源,更加减少能耗。
某些实施例中,进气通道中至少有一条为经过热交换器处理的交换空气输入通道2。交换空气输入通道2所输入的是通过热交换器将室外空气与室内排出做热交换之后所得到的空气。
某些实施例中,进气通道为两条,一条为新鲜空气直输通道1,另一条为交换空气输入通道2。还包括交换空气排出通道3、以及热交换器6;热交换器6设置在交换空气输入通道2和交换空气排出通道3上,用于将室外空气与排出空气做热交换;所述新鲜空气直输通道1,用于直接输送未经热交换的室外空气;所述交换空气排出通道3,用于将室内的空气排出;所述交换空气输入通道2内输送的是:在热交换器6的作用下与交换空气排出通道3内的排出空气做热交
换之后的室外空气;所述通道控制设备5设置于所述新鲜空气直输通道1与所述交换空气输入通道2上。
某些实施例中,还包括控制器,控制上设有用于设置待调温空间设定温度的温控装置,控制器与通道控制设备5连接;所述新鲜空气直输通道1、所述交换空气输入通道2的排出端、所述待调温空间4内分别设有用于采集温度数据的温度传感器,各所述温度传感器将采集的温度数据传至控制器。
控制器,根据新鲜空气直输通道1中空气的温度、交换空气输入通道2中空气的温度、待调温空间4内的温度与设定温度之间的关系,命令所述通道控制设备5在新鲜空气直输通道1和交换空气输入通道2之间选择一个进行开通。
在进入每个待调温空间4的两个进气管道上设置温度传感器,用于采集最终送入室内的进气温度,每个待调温空间4设置温度传感器用于采集实时室内温度,用户根据需要设置一个理想的设定温度,如此就一共有四个温度参数进行比较。
当待调温空间4内的温度高于设定温度时,控制器命令通道控制设备5开通新鲜空气直输通道1与交换空气输入通道2之间空气温度低的;当待调温空间4内的温度低于设定温度时,控制器命令通道控制设备5开通新鲜空气直输通道1与交换空气输入通道2之间空气温度高的;当待调温空间4内的温度等于设定温度时,控制器命令通道控制设备5开通新鲜空气直输通道1与交换空气输入通道2之间空气温度与实际温度温差小的。
在一些实施例中,包括一总进气通道,总进气通道上设有过滤箱7,空气经过过滤处理后再分为两部分,一部分进入交换空气输入通道2,另一部分进入新鲜空气直输通道1。这样的好处在于,两进气通道内的空气统一进行过滤处理,工序简单,系统结构简化,节约成本。
图1所示的通道控制设备5包括电控三通阀,在两条进气通道进入至每个待调温空间4的进风口交汇处,通过一个电控三通阀汇聚到一个终端进风口,电控三通阀具备两个进口端一个出口端,两个进口端分别连接新鲜空气直输通道和交换空气输入通道,出口端与待调温空间连通,电控三通阀在两个进口端之间进行切换,在两个温度不同的空气输入管道中,选择一个温度适中的将其开通,使得让用户舒适感较强的新鲜空气送入至每个待调温空间4。
图2所示的通道控制设备5包括第一电控阀、第二电控阀,第一电控阀安装于新鲜空气直输通道上,第二电控阀安装于交换空气输入通道上,由两个电控阀分别来控制两个通道的开通或关闭。
通道控制设备,任一待调温空间内均设有通道控制设备,用于在各进气通道中选择其中一条进行开通。当通道控制装置采用第一电控阀、第二电控阀时,除了可以实现前述用途,还可以在无需使用新风空调系统时,第一电控阀关闭新鲜空气直输通道,第二电控阀关闭交换空气输入通道,这样可以减少能耗。
待调温空间4既可以指一个一个的房间,也可以指对设定温度的诉求一致的多个空间。例如书房与客厅,一般两者所需要的温度是一致的,那么这两个就可以设为一个待调温空间4;卧室与书房,两者的温度诉求会有所区别,那么这两个各自为一个待调温空间4。
示例说明,客厅设定温度为26度,实际的室内温度为31度,交换空气输入通道2的温度为30度,新鲜空气直输通道1的温度为27,那么控制器将会命令通道控制设备5将新鲜空气直输通道1开通。
上述实施方式仅为本发明的优选实施方式,不能以此来限定本发明保护的范围,本领域的技术人员在本发明的基础上所做的任何非实质性的变化及替换均属于本发明所要求保护的范围。
Claims (8)
- 独立控温双进气通道新风空调系统,其特征在于:包括待调温空间,每个待调温空间内接入至少两条输送不同温度空气的进气通道;通道控制设备,任一待调温空间内均设有通道控制设备,用于在各进气通道中选择其中一条进行开通。
- 如权利要求1所述的独立控温双进气通道新风空调系统,其特征在于:当待调温空间的实际温度高于所需的设定温度时,通道控制设备选择开通各进气通道中输送空气温度最低的;当待调温空间的实际温度低于所需的设定温度时,通道控制设备选择开通各进气通道中输送空气温度最高的;当待调温空间的实际温度等于所需的设定温度时,通道控制设备选择开通各进气通道中输送空气温度与实际温度温差小的。
- 如权利要求1所述的独立控温双进气通道新风空调系统,其特征在于:所述进气通道中至少有一条为经过热交换器处理的交换空气输入通道。
- 如权利要求3所述的独立控温双进气通道新风空调系统,其特征在于:还包括新鲜空气直输通道、交换空气排出通道、以及热交换器;所述新鲜空气直输通道,用于直接输送室外空气;所述交换空气排出通道,用于将待调温空间内的空气排出;所述热交换器设置于所述交换空气输入通道和所述交换空气排出通道上;所述通道控制设备设置于所述新鲜空气直输通道与所述交换空气输入通道上。
- 如权利要求4所述的独立控温双进气通道新风空调系统,其特征在于:还包括控制器,所述控制器与所述通道控制设备连接;所述新鲜空气直输通道、所述交换空气输入通道的排出端、所述待调温空 间内分别设有用于采集温度数据的温度传感器,各所述温度传感器将采集的温度数据传至控制器。
- 如权利要求1所述的独立控温双进气通道新风空调系统,其特征在于:所述通道控制设备包括电控三通阀,所述电控三通阀设置于两条输送不同温度空气的进气通道的交汇处。
- 如权利要求1所述的独立控温双进气通道新风空调系统,其特征在于:所述通道控制设备包括第一电控阀、第二电控阀,所述第一电控阀、第二电控阀分别安装于所述两条输送不同温度空气的进气通道上。
- 如权利要求7所述的独立控温双进气通道新风空调系统,其特征在于:所述第一电控阀、第二电控阀可同时关闭。
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