WO2017084371A1 - 空调机 - Google Patents

空调机 Download PDF

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Publication number
WO2017084371A1
WO2017084371A1 PCT/CN2016/090947 CN2016090947W WO2017084371A1 WO 2017084371 A1 WO2017084371 A1 WO 2017084371A1 CN 2016090947 W CN2016090947 W CN 2016090947W WO 2017084371 A1 WO2017084371 A1 WO 2017084371A1
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WO
WIPO (PCT)
Prior art keywords
air conditioner
variable frequency
evaporator
air
frequency drive
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PCT/CN2016/090947
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English (en)
French (fr)
Inventor
何佳明
陶峰
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特灵空调系统(中国)有限公司
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Application filed by 特灵空调系统(中国)有限公司 filed Critical 特灵空调系统(中国)有限公司
Publication of WO2017084371A1 publication Critical patent/WO2017084371A1/zh

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F1/00Room units for air-conditioning, e.g. separate or self-contained units or units receiving primary air from a central station
    • F24F1/02Self-contained room units for air-conditioning, i.e. with all apparatus for treatment installed in a common casing
    • F24F1/029Self-contained room units for air-conditioning, i.e. with all apparatus for treatment installed in a common casing characterised by the layout or mutual arrangement of components, e.g. of compressors or fans
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F1/00Room units for air-conditioning, e.g. separate or self-contained units or units receiving primary air from a central station
    • F24F1/02Self-contained room units for air-conditioning, i.e. with all apparatus for treatment installed in a common casing
    • F24F1/032Self-contained room units for air-conditioning, i.e. with all apparatus for treatment installed in a common casing characterised by heat exchangers
    • F24F1/0323Self-contained room units for air-conditioning, i.e. with all apparatus for treatment installed in a common casing characterised by heat exchangers by the mounting or arrangement of the heat exchangers

Definitions

  • This document relates to roof air conditioners, and more particularly to air conditioners.
  • variable frequency drive In the existing air conditioner or small roof air conditioner, the variable frequency drive is subject to many restrictions. For example, the appearance of the air conditioner is preferably not changed, and the chassis cannot be fixed by holes to prevent water leakage. Therefore, how to design a variable frequency drive
  • the roof air conditioner makes it possible to install variable frequency drives in a limited internal space, and the use of inverter compressors to improve the energy efficiency of air conditioners is an important issue.
  • the purpose of this paper is to provide an air conditioner capable of installing a variable frequency drive in a limited internal space and using an inverter compressor to improve the energy efficiency of the air conditioner.
  • An air conditioner includes an air conditioner case and a condenser, an inverter compressor, and an evaporator disposed in the same refrigerant circulation system disposed in the air conditioner case, and the evaporator is disposed at one side of the air conditioner case
  • the condenser is located on the opposite side of the side of the evaporator in the air-conditioning case, and the variable frequency drive box of the inverter compressor is disposed in the space of the box on the side where the evaporator is located, It is located on the circulation path between the evaporator and the indoor air.
  • variable frequency drive housing is configured to be movable relative to the air conditioning housing to facilitate removal from a first side of the air conditioning housing, the first side and the evaporator being The outlet side of the air-conditioned cabinet for easy maintenance is on the different side.
  • the air conditioning box includes a side panel, the side panel is movably connected with a vertical panel, and the vertical panel seals the box outlet on the side panel, and the vertical panel is also fixed
  • the variable frequency drive housing, the connection between the vertical panel and the side panel can be tripped to move the vertical panel and carry the variable frequency drive housing out of the box outlet.
  • the bottom of the vertical panel is hinged to the air conditioning case.
  • the top or/and sides of the riser are locked to the air conditioning enclosure.
  • the top or/and sides of the riser are locked to the air conditioning box by a latching device with a rotating handle.
  • variable frequency drive housing and the air conditioning housing are connected by a flexible member to limit the opening and closing angle of the vertical panel and the weight of the variable frequency drive housing.
  • a cable tie is fixed on the side plate of the variable frequency drive housing, the cable tie fixes the high voltage electric wire connected to the variable frequency drive box, and leaves the high voltage electric wire with a sufficient length to make it natural Drooping.
  • the air conditioning case has a front side, a back side, and left and right side faces, and the air conditioner further includes a gas heater that directly supplies heating to the indoor side, and is configured to convey the cooled or heated air to the indoor side.
  • a blower fan a controller that controls operation of the entire air conditioner, and an economizer for introducing fresh air; from the front of the air conditioner case, the gas heater is interposed between the evaporator and the condenser
  • the controller and the air supply fan are spaced apart, the inverter compressor and the condenser are disposed on the same side of the air conditioning box, the evaporator is obliquely disposed in the air conditioning box, and the variable frequency drive housing is And the economizer is disposed on a lower side of the evaporator.
  • variable frequency drive housing of the inverter compressor has a cooling fan.
  • variable frequency drive box is installed in the space of the tank on one side of the evaporator, and the heat generated by the variable frequency drive box can be taken out by the circulation between the evaporator and the indoor air, and the environment is relatively dry and the temperature is not high. And the relatively sealed space is also conducive to the operation of the variable frequency drive. In this way, even if the variable frequency drive is installed under a limited internal space, it can ensure that the variable frequency drive can be used normally with the inverter compressor to improve the energy efficiency of the air conditioner. Moreover, installing the variable frequency drive housing on the evaporator side, and borrowing the remaining space of the air conditioner housing corresponding to the evaporator does not cause the appearance size of the air conditioner to change;
  • variable frequency drive housing is fixed to the movable vertical panel on the air conditioning cabinet, and the variable frequency drive housing can be easily taken out and installed from the air conditioning housing and can pass the transportation test.
  • FIG. 1 is a perspective view of an air conditioner in an embodiment of the present invention
  • Figure 2 is a front elevational view of the air conditioner of Figure 1;
  • Figure 3 is a rear elevational view of the air conditioner of Figure 1;
  • Figure 4 is a partially enlarged perspective view corresponding to the left portion of Figure 3;
  • Figure 5 is a partial enlarged view of the left side portion of Figure 3;
  • Figure 6 is another partially enlarged perspective view corresponding to the left portion of Figure 3;
  • Fig. 7 is a schematic view showing the portion shown in Fig. 5 in an open state.
  • the air conditioner includes an air-conditioning case 1 and a condenser 11, an inverter compressor 13, and an evaporator 14 provided in the air-conditioning case 1.
  • the condenser 11, the inverter compressor 13 and the evaporator 14 and the throttle elements shown in the figures are arranged in the same manner as the known refrigerant cycle system.
  • the evaporator 14 is disposed at one side of the air-conditioning case 1, and the condenser 11 is located on the opposite side of the side where the evaporator 14 is located in the air-conditioning case 1, that is, in FIG.
  • the condenser 11 is located on the right side in the drawing, and
  • the evaporator 14 is located on the left side of the drawing, and the variable frequency drive housing 16 of the inverter compressor 13 is disposed in the space of the casing 1 on the side where the evaporator 14 is located, and is located on the circulation path between the evaporator 14 and the indoor air. .
  • variable frequency drive housing 16 has high requirements for heat dissipation space and ambient temperature, and can be configured to be self-cooled with a fan.
  • the housing of the variable frequency drive housing 16 can protect the safety of the operator to prevent accidental contact with the internal setting. High voltage wire connected to the variable frequency drive.
  • variable frequency drive housing 16 in addition to the installation of the variable frequency drive housing 16 in the space of the housing 1 on the side where the evaporator 14 is located, the variable frequency drive housing can also be mounted in the housing space on the side of the condenser.
  • the variable frequency drive housing 16 does not operate normally, which may be caused by an excessively high ambient temperature on the side of the condenser resulting in a decrease in the performance of the actuator.
  • variable frequency drive housing 16 is installed in the space of the housing on one side of the evaporator, and the heat generated by the variable frequency drive housing 16 can be taken out by the circulation between the evaporator 14 and the indoor air, and the environment is relatively Dry, low temperature, and relatively sealed space is also beneficial for variable frequency drive operation. In this way, even if the variable frequency drive is installed under a limited internal space, it can ensure that the variable frequency drive can be used normally with the inverter compressor to improve the energy efficiency of the air conditioner. Moreover, the variable frequency drive housing 16 is mounted on the evaporator 14 On the side, the evaporator 14 is used to correspond to the remaining space of the air-conditioning case 1, so that the appearance size of the air conditioner does not change.
  • variable frequency drive housing 16 can be arranged to be movable relative to the air conditioning housing 1 so as to be removed from the first side of the air conditioning housing 1 , the first side and the evaporator 14 in the air outlet housing 1 for easy maintenance on the outlet side For different sides.
  • the variable frequency drive housing 16 is disposed to be taken out on the left side, and the evaporator 14 is disposed to be exposed on the front side, and the plate on the front side of the air conditioning case 1 is removed, and the evaporator 14 can be repaired.
  • the drive housing 16 is taken out from the left side without affecting the arrangement space of the evaporator 14.
  • the air-conditioning case 1 has a front side, a back side, and left and right side faces, and the back side may be mounted on the wall body, and the device inside the air-conditioning case 1 is repaired, generally from the front side, the left side side or On the right side.
  • the air-conditioning case 1 includes a side panel 2 , and the side panel 2 is movably connected to the vertical panel 21 .
  • the vertical panel 21 seals the box outlet 29 on the side panel 2 , and the vertical panel 21 is also fixed.
  • the variable frequency drive housing 28, the connection of the vertical panel 21 to the side panel 2 can be tripped to move the vertical panel 21 and carry the variable frequency drive housing 28 out of the housing outlet 29.
  • the upright panel 21 may be a portion that is split from the side panel 2 and is complementary to the cabinet outlet 29.
  • the movable connection of the vertical panel 21 to the air-conditioning case 1 includes, but is not limited to, the bottom of the upright panel 21 connected to the air-conditioning case 1 via a hinge 21.
  • the locking of the upright panel 21 and the air conditioning case 1 may be to lock the top or/and the side of the upright panel 21 to the air conditioning case 1 by means of a locking device.
  • the top or/and sides of the upright panel 21 are locked to the air conditioning cabinet 1 by means of a latching device 23 with a rotating handle.
  • the latching device 23 can be rotated by rotating the handle so that the connection of the upright panel 21 and the side panel 2 can be released or stuck.
  • variable frequency drive housing 28 and the air conditioning housing 1 are connected by the flexible member 24 to limit the opening and closing angle of the vertical panel 21 and The weight of the variable frequency drive housing 28 is carried.
  • a tie strip 282 is secured to the side panel 281 of the variable frequency drive housing 28, and the strap 282 secures the high voltage electrical line 26 to which the variable frequency drive box 28 is attached and allows the high voltage electrical line 26 to be sufficiently long. It naturally hangs down. Thus, even when the variable frequency drive housing 28 is opened and closed, the high voltage electric wire 26 is not pressed under the inverter drive housing 28, resulting in electric leakage or other danger.
  • the vertical panel 21 is opened by rotating the latching device 23, and the vertical panel 21 is discharged downward together with the driver cabinet by the limit of the hinge 22. 28.
  • the rotary cassette device 23 can be closed. Therefore, the embodiment shown in the drawing can easily take out and install the variable frequency drive housing 28 from the air conditioning housing 1.
  • the air conditioner further includes an economizer 20, a gas heater 17, a controller 18, and a blower fan 15.
  • the function of the economizer 20 is to directly introduce external air to the indoor side when the atmospheric temperature is suitable, and to reduce the power consumption of the machine.
  • the gas heater 17 is used to provide heating directly to the indoor side
  • the controller 18 is used to receive user commands or to detect environmental changes and thereby control the operation of the entire air conditioning system.
  • the blower fan 15 is used to deliver cooled or heated air to the room.
  • the air-conditioning case 1 is divided into three sections 101, 100, 102, and the section 101 has an evaporator 14 built therein, and the section 102 houses the inverter compressor 13 and the condenser 11.
  • the portion 100 incorporates a gas heater 17, a controller 18, and a blower fan 15.
  • the evaporator 14 and the condenser 11 are spaced apart by the gas heater 17, the controller 18, and the blower fan 15.
  • the inverter compressor 13 and the condenser 16 are disposed on the same side of the air-conditioning case 1, and the evaporator 14 is disposed obliquely in the air-conditioning case 1, and the variable-frequency drive case 28 and the economizer 20 are disposed on the lower side of the evaporator 14. Since the variable frequency drive housing 28 is movable, it does not interfere with the adjustment of the economizer 20. On the front side of the air-conditioning case 1, the evaporator 14 may block the removal of the variable-frequency drive case 28, and the variable-frequency drive case 16 is disposed to be taken out on the left side, so that the evaporator 14 can be avoided.
  • the driver case 28 is fixed to the upright panel 21, and even if the bottom plate of the air conditioner case 1 cannot be perforated to fix the limitation of the drive case 28, the drive case 28 can be firmly fixed and passed the transportation test.
  • variable frequency drive housing 16 of the inverter compressor 13 can be provided with a self-contained cooling fan (not shown in the drawing), and the self-contained fan can generate a heat dissipation airflow, and the heat generated by the variable frequency drive housing 16 can pass through the evaporator 14 and the indoor The cycle of space takes away.

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Air Conditioning Control Device (AREA)
  • Structures Of Non-Positive Displacement Pumps (AREA)

Abstract

一种空调机,其能够在有限的内部空间下安装变频驱动器,配合使用变频压缩机从而提高空调能效水平。该空调机包括空调箱体(1)以及在所述空调箱体(1)内设置的冷凝器(11)、变频压缩机(13)以及蒸发器(14),所述蒸发器(14)设置在所述空调箱体(1)的一侧,所述冷凝器(11)在所述空调箱体(1)中位于所述蒸发器(14)所在一侧的相反侧,其中,所述变频压缩机(13)的变频驱动器箱体(16)设置在所述蒸发器(14)所在一侧的所述空调箱体的空间内,并位于所述蒸发器(14)与室内空气之间的循环路径上。

Description

空调机 技术领域
本文涉及屋顶空调机,尤其涉及空调机。
背景技术
在已有的空调机中或者小型屋顶空调机中配置变频驱动器,要受到许多限制,例如空调的外观尺寸最好不要有变化、不能利用底盘打孔固定以防止漏水等,因此如何设计带变频驱动器的屋顶空调机,使其能够在有限的内部空间下安装变频驱动器,配合使用变频压缩机,提高空调能效水平,这是一项重要课题。
发明内容
本文的目的在于提供一种空调机,能够在有限的内部空间下安装变频驱动器,配合使用变频压缩机,提高空调能效水平。
一种空调机包括空调箱体以及在所述空调箱体内设置的位于同一制冷剂循环系统的冷凝器、变频压缩机以及蒸发器,所述蒸发器设置在所述空调箱体的一侧,所述冷凝器在所述空调箱体中位于所述蒸发器所在一侧的相反侧,所述变频压缩机的变频驱动器箱体设置在所述蒸发器所在一侧的所述箱体的空间内,并位于所述蒸发器与室内空气之间的循环路径上。
在一实施例中,所述变频驱动器箱体设置成相对所述空调箱体可活动,以便于从所述空调箱体的第一侧取出,所述第一侧与所述蒸发器于所述空调箱体内的便于维修的出口侧为不同侧。
在一实施例中,所述空调箱体包括一侧面板,所述侧面板活动连接有立面板,所述立面板密封着所述侧面板上的箱体出口,所述立面板上还固定着所述变频驱动器箱体,所述立面板与所述侧面板的连接能脱扣,以使所述立面板活动并将所述变频驱动器箱体从所述箱体出口带出。
在一实施例中,所述立面板底部铰接于所述空调箱体上。
在一实施例中,所述立面板顶部或/和侧部锁定于所述空调箱体上。
在一实施例中,所述立面板顶部或/和侧部通过带旋转把手的卡掣装置锁定于所述空调箱体上。
在一实施例中,所述变频驱动器箱体与所述空调箱体之间通过柔性件连接,以限制所述立面板的开合角度和承载所述变频驱动器箱体的重量。
在一实施例中,在所述变频驱动器箱体的侧板上固定扎带,所述扎带把所述变频驱动器箱连接的高压电线固定,并使高压电线留出足够的长度,使其自然下垂。
在一实施例中,所述空调箱体具有正面、背面以及左右侧面,所述空调机还包括直接向室内侧提供暖气的燃气加热器、用于把冷却或加热过的空气输送到室内侧的送风风机、控制整个空调机的运转的控制器以及用于引入新风的经济器;从所述空调箱体的正面来看,所述蒸发器和所述冷凝器之间由所述燃气加热器、控制器以及送风风机间隔开,所述变频压缩机与所述冷凝器设置在所述空调箱体的同一侧,所述蒸发器于所述空调箱体内倾斜设置,所述变频驱动器箱体以及所述经济器设置于所述蒸发器的下侧。
在一实施例中,所述变频压缩机的变频驱动器箱体自带散热风扇。
本文的有益技术效果是:
将变频驱动器箱体安装在蒸发器一侧的箱体的空间内,利用蒸发器与室内空气之间的循环,可以将变频驱动器箱体产生的热量带出,其环境相对干爽、温度不高,并且相对密封的空间也有利于变频驱动器工作。这样,即便在有限的内部空间下安装变频驱动器,也能确保变频驱动器能正常配合使用变频压缩机,提高空调能效水平。而且,将变频驱动器箱体安装在蒸发器一侧,借用蒸发器对应的空调箱体的剩余空间,不会使得空调机的外观尺寸有变化;
在一实施例中,将变频驱动器箱体固定在空调箱体上的可活动的立面板上,能方便地把变频驱动器箱体从空调箱体中取出和安装回去,并能通过运输试验。
附图概述
本发明的具体特征、性能由以下的实施例及其附图进一步给出。
图1为本文的一实施例中空调机的立体图;
图2为图1中空调机的主视图;
图3为图1中空调机的后视图;
图4为对应图3中左侧部分的局部放大立体视图;
图5为图3中左侧部分的局部放大视图;
图6为对应图3中左侧部分的另一局部放大立体视图;
图7为图5所示部分处于打开状态的示意图。
本发明的最佳实施方式
下面结合具体实施例和附图对本文作进一步说明,在以下的描述中阐述了更多的细节以便于充分理解本文,但是本文显然能够以多种不同于此描述的其它方式来实施,本领域技术人员可以在不违背本文内涵的情况下根据实际应用情况作类似推广、演绎,因此不应以此具体实施例的内容限制本文的保护范围。
图1至图7示出了本文的一实施例,需要注意的是,这些附图均仅作为示例,其并非是按照等比例的条件绘制的,并且不应该以此作为对本文实际要求的保护范围构成限制。
如图1所示,空调机包括空调箱体1以及在空调箱体1内设置的冷凝器11、变频压缩机13以及蒸发器14。冷凝器11、变频压缩机13以及蒸发器14以及图中为示出的节流元件按照已知的制冷剂循环系统那样配置。蒸发器14设置在空调箱体1的一侧,冷凝器11在空调箱体1中位于蒸发器14所在一侧的相反侧,即在图1中,冷凝器11位于图中的右侧,而蒸发器14位于图中的左侧,变频压缩机13的变频驱动器箱体16设置在蒸发器14所在一侧的箱体1的空间内,并位于蒸发器14与室内空气之间的循环路径上。
变频驱动器箱体16对散热空间和环境温度要求都比较高,其可以配置成自带风扇制冷,变频驱动器箱体16的壳体可以保护操人员安全,以防止人不小心碰到与其内部设置的变频驱动器相连的高压电线。
从空间的角度来看,除了在蒸发器14所在一侧的箱体1的空间内安装变频驱动器箱体16外,在也可以在冷凝器一侧的箱体空间内安装变频驱动器箱体。但根据发明人的一试验,虽然在冷凝器一侧的箱体也存在安装空间,但是变频驱动器箱体16不能正常工作,可能是冷凝器一侧的环境温度过高导致驱动器性能降低有关。前述实施例将变频驱动器箱体16安装在蒸发器一侧的箱体的空间内,利用蒸发器14与室内空气之间的循环,可以将变频驱动器箱体16产生的热量带出,其环境相对干爽、温度不高,并且相对密封的空间也有利于变频驱动器工作。这样,即便在有限的内部空间下安装变频驱动器,也能确保变频驱动器能正常配合使用变频压缩机,提高空调能效水平。而且,将变频驱动器箱体16安装在蒸发器14一 侧,借用蒸发器14对应空调箱体1的剩余空间,不会使得空调机的外观尺寸有变化。
变频驱动器箱体16可以设置成相对空调箱体1是活动的,这样以便于从空调箱体1的第一侧取出,第一侧与蒸发器14于空调箱体1内的便于维修的出口侧为不同侧。在图1中,变频驱动器箱体16设置成左侧取出,而蒸发器14设置成在正面侧露出,将空调箱体1的正面侧的板材拆除,就可以对蒸发器14进行维修,变频器驱动箱体16从左侧取出,不影响蒸发器14的布置空间。
如图1所示,空调箱体1具有正面、背面以及左右侧面,其背面侧可能会对着墙体进行安装,对空调箱体1内部的装置进行维修,一般从其正面、左侧面或者右侧面进行。
如图4至图7所示,空调箱体1包括侧面板2,侧面板2活动连接有立面板21,立面板21密封着侧面板2上的箱体出口29,立面板21上还固定着变频驱动器箱体28,立面板21与侧面板2的连接能脱扣,以使立面板21活动并将变频驱动器箱体28从箱体出口29带出。立面板21可以是从侧面板2上分割出来的一部分,与箱体出口29互补。
立面板21与空调箱体1的活动连接包括但不限于立面板21的底部通过铰链21连接于空调箱体1上。
立面板21与空调箱体1的锁定可以是通过锁装置将立面板21的顶部或/和侧部锁定于空调箱体1上。在如图所示的实施例中,立面板21的顶部或/和侧部通过带旋转把手的卡掣装置23锁定于空调箱体1上。可以通过旋转把手转动卡掣装置23,以使立面板21与侧面板2的连接能脱扣或者相卡。
为防止变频驱动器箱体28的重量压坏铰链22或者铰链22失效压到操作者,变频驱动器箱体28与空调箱体1之间通过柔性件24连接,以限制立面板21的开合角度和承载变频驱动器箱体28的重量。
在优选的实施例中,在变频驱动器箱体28的侧板281上固定扎带282,扎带282把变频驱动器箱28连接的高压电线26固定,并使高压电线26留出足够的长度,使其自然下垂。这样,即便在开合变频驱动器箱体28时,高压电线26不会被变频驱动器箱体28压在下面,导致漏电或者其他危险。如图7所示,通过旋转卡掣装置23打开立面板21,利用铰链22的限位,往下放出立面板21连同驱动器箱体 28。关闭时,只要把立面板21连同变频驱动器箱体28推回原位,旋转卡掣装置23关闭即可。因此,如图所示的实施例能方便地把变频驱动器箱体28从空调箱体1中取出和安装回去。
如图1至图3所示,空调机还包括经济器20、燃气加热器17、控制器18以及送风风机15。经济器20的作用是在大气温度较为适宜的情况下,直接引入外部空气,送到是室内侧,降低机器的功耗。燃气加热器17用来直接向室内侧提供暖气,控制器18用于接收用户指令或者检测环境变化并进而控制整个空调系统的运转。送风风机15用于把冷却或加热过的空气输送到室内。
从空调箱体1的主视图来看,空调箱体1分为三个部分101、100、102,部分101内置蒸发器14,部分102内置变频压缩机13与冷凝器11。部分100内置燃气加热器17、控制器18以及送风风机15。蒸发器14和冷凝器11之间由燃气加热器17、控制器18以及送风风机15间隔开。变频压缩机13与冷凝器16设置在空调箱体1的同一侧,蒸发器14于空调箱体1内倾斜设置,变频驱动器箱体28以及与经济器20设置于蒸发器14的下侧。由于变频驱动器箱体28可活动设置,因此不妨碍对经济器20的调节。在空调箱体1的正面侧,蒸发器14可能会阻挡变频驱动器箱体28的取出,变频驱动器箱体16设置成左侧取出,因此可以避开蒸发器14。将驱动器箱体28固定在立面板21上,即便存在空调箱体1的底板不能打孔以固定驱动器箱体28的限制,驱动器箱体28也能被牢固固定,并通过运输实验。
变频压缩机13的变频驱动器箱体16可以设置成自带散热风扇(在图中未示出),其自带风扇可以产生散热气流,将变频驱动器箱体16产生的热量通过蒸发器14与室内空间的循环带走。
本文虽然以较佳实施例公开如上,但其并不是用来限定本文,任何本领域技术人员在不脱离本文的精神和范围内,都可以做出可能的变动和修改。因此,凡是未脱离本文技术方案的内容,依据本文的技术实质对以上实施例所作的任何修改、等同变化及修饰,均落入本文权利要求所界定的保护范围之内。

Claims (10)

  1. 空调机,包括空调箱体以及在所述空调箱体内设置的位于同一制冷剂循环系统的冷凝器、变频压缩机以及蒸发器,所述蒸发器设置在所述空调箱体的一侧,所述冷凝器在所述空调箱体中位于所述蒸发器所在一侧的相反侧,其特征在于,所述变频压缩机的变频驱动器箱体设置在所述蒸发器所在一侧的所述箱体的空间内,并位于所述蒸发器与室内空气之间的循环路径上。
  2. 如权利要求1所述的空调机,其特征在于,所述变频驱动器箱体设置成相对所述空调箱体可活动,以便于从所述空调箱体的第一侧取出,所述第一侧与所述蒸发器于所述空调箱体内的便于维修的出口侧为不同侧。
  3. 如权利要求2所述的空调机,其特征在于,所述空调箱体包括一侧面板,所述侧面板活动连接有立面板,所述立面板密封着所述侧面板上的箱体出口,所述立面板上还固定着所述变频驱动器箱体,所述立面板与所述侧面板的连接能脱扣,以使所述立面板活动并将所述变频驱动器箱体从所述箱体出口带出。
  4. 如权利要求3所述的空调机,其特征在于,所述立面板底部铰接于所述空调箱体上。
  5. 如权利要求4所述的空调机,其特征在于,所述立面板顶部或/和侧部锁定于所述空调箱体上。
  6. 如权利要求5所述的空调机,其特征在于,所述立面板顶部或/和侧部通过带旋转把手的卡掣装置锁定于所述空调箱体上。
  7. 如权利要求4所述的空调机,其特征在于,所述变频驱动器箱体与所述空调箱体之间通过柔性件连接,以限制所述立面板的开合角度和承载所述变频驱动器箱体的重量。
  8. 如权利要求4所述的空调机,其特征在于,在所述变频驱动器箱体的侧板上固定扎带,所述扎带把所述变频驱动器箱连接的高压电线固定,并使高压电线留出足够的长度,使其自然下垂。
  9. 如权利要求1所述的空调机,其特征在于,所述空调箱体具有正面、背面以及左右侧面,所述空调机还包括直接向室内侧提供暖气的燃气加热器、用于把冷却或加热过的空气输送到室内侧的送风风机、控制整个空调机的运转的控制器以及用于引入新风的经济器;从所述空调箱体的正面来看,所述蒸发器和所述冷凝器之间由所述燃气加热器、控制器以及送风风机间隔开,所述变频压缩机与所述冷凝器设置在所述空调箱体的同一侧,所述蒸发器于所述空调箱体内倾斜设置,所述变频驱动器箱体以及所述经济器设置于所述蒸发器的下侧。
  10. 如权利要求1所述的空调机,其特征在于,所述变频压缩机的变频驱动器箱体自带散热风扇。
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