Air conditioner
An air conditioner and heat exchange unit technology, applied in the field of air conditioner, can solve the problems of poor mobility, poor use flexibility, and large volume of the whole machine, so as to achieve full utilization, prevent tipping, and reduce product volume.
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Embodiment 1
[0064] like Figure 1 to Figure 3 As shown, the air conditioner provided in this embodiment includes: a casing 1 , a compressor 2 , an energy storage device 3 , a first heat exchange unit 5 , a first fan 10 and a second heat exchange unit 4 .
[0065] The housing 1 has a chassis 101, and the chassis 101 defines the bottom wall of the housing cavity of the housing 1 . The compressor 2 is accommodated in the casing 1 and is arranged on the chassis 101 of the casing 1; the energy storage device 3 is accommodated in the casing 1, and the energy storage device 3 is arranged on the chassis 101 and is located on the side of the compressor 2; A heat exchange unit 5 is accommodated in the casing 1, the first heat exchange unit 5 is located on the upper side of the compressor 2 and at the side of the energy storage device 3; the second heat exchange unit 4 and the first fan 10 are accommodated in the casing 1, the second heat exchange unit 4 and the first fan 10 are arranged on the upp...
Embodiment 2
[0070] In addition to the features of the above-mentioned embodiment, this embodiment further defines that the energy storage device 3 is provided with an energy storage material, a second fluid channel 6 and a first fluid channel 7, and the second fluid channel 6 and the first fluid channel 7 are connected with Heat transfer of energy storage materials.
[0071] The air conditioner is formed with a compression branch and a working branch, wherein the compressor 2 is arranged on the compression branch, the air conditioner also has a throttle unit 8, and the working branch is provided with a first heat exchange unit 5, a throttle unit 8 and a throttling unit 8 arranged in series. The first fluid channel 7 .
[0072] The air conditioner is formed with a first circuit and a second circuit, the working branch and the compression branch are arranged in series and formed as part of the first circuit, and the second heat exchange unit 4 and the second fluid passage 6 are arranged in ...
Embodiment 3
[0088] In addition to the features in the above-mentioned Embodiment 2, this embodiment further defines: the driving device 9 is located on the upper side of the energy storage device 3 , the driving device 9 is arranged on the energy storage device 3 , and the energy storage device 3 is responsible for the driving device 9 . At least part of the weight. That is, the driving device 9 is placed on the energy storage device 3 so that the gravity of the driving device 9 directly presses on the energy storage device 3 . Making the energy storage device 3 bear the load on the driving device 9 has the effect of strengthening the assembly stability and working stability of the driving device 9 on the one hand, and on the other hand, it is more convenient to assemble the product, and the upper part of the energy storage device 3 is more fully utilized. Space.
[0089] Of course, in order to further strengthen the installation stability of the drive device 9, the drive device 9 can be...
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