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Air conditioner main unit with multiple negative pressure cavities arranged along long sides and equipment platform of air conditioner main unit
The invention belongs to the field of efficient energy-saving air conditioning technologies and green buildings, and discloses an air conditioner host with multiple negative pressure cavities arranged along the long sides and an equipment platform. The air conditioner host comprises a finned tube heat exchanger assembly, a shell, an air conditioner compressor, a gas-liquid separator and a fan; the finned tube heat exchanger assembly comprises at least two finned tube heat exchangers, and the finned tube heat exchangers comprise horizontal C-shaped finned tube heat exchangers and/or mouth-shaped finned tube heat exchangers; all finned tube heat exchangers of the finned tube heat exchanger assembly are connected with the same air conditioner compressor. At least one air conditioner host is transversely arranged in the air conditioner host equipment platform; an air inlet and distribution channel of the air conditioner host is close to the outer vertical face. An air exhaust cavity is formed above the air conditioner main unit, and an air outlet of the air exhaust cavity is formed in and/or abuts against the outer vertical face. The efficient heat exchange air channel structure of the air conditioner host is constructed, and the energy density is improved; the air conditioner host is convenient to detect and maintain; a side-in and side-out air path structure is constructed on the outer vertical face of the equipment platform.
本发明属于高效节能空气调节技术和绿色建筑领域,公开了一种多只负压腔沿长边设置的空调主机和设备平台。空调主机包括翅片管换热器总成、壳体、空调压缩机、气液分离器和风机;翅片管换热器总成包括至少2个翅片管换热器,翅片管换热器包括水平C型翅片管换热器和/或“口”型翅片管换热器;翅片管换热器总成的所有翅片管换热器,均与同一个空调压缩机连接。空调主机设备平台内沿横向设置至少1台空调主机;空调主机的进风配风通道靠近外立面;空调主机的上方设有排风腔,排风腔的出风口设置和/或抵近于外立面。本发明构建空调主机高效换热风路结构提高能量密度;便利空调主机检测维修;实现了设备平台外立面构建侧进侧出风路结构。
Air conditioner main unit with multiple negative pressure cavities arranged along long sides and equipment platform of air conditioner main unit
The invention belongs to the field of efficient energy-saving air conditioning technologies and green buildings, and discloses an air conditioner host with multiple negative pressure cavities arranged along the long sides and an equipment platform. The air conditioner host comprises a finned tube heat exchanger assembly, a shell, an air conditioner compressor, a gas-liquid separator and a fan; the finned tube heat exchanger assembly comprises at least two finned tube heat exchangers, and the finned tube heat exchangers comprise horizontal C-shaped finned tube heat exchangers and/or mouth-shaped finned tube heat exchangers; all finned tube heat exchangers of the finned tube heat exchanger assembly are connected with the same air conditioner compressor. At least one air conditioner host is transversely arranged in the air conditioner host equipment platform; an air inlet and distribution channel of the air conditioner host is close to the outer vertical face. An air exhaust cavity is formed above the air conditioner main unit, and an air outlet of the air exhaust cavity is formed in and/or abuts against the outer vertical face. The efficient heat exchange air channel structure of the air conditioner host is constructed, and the energy density is improved; the air conditioner host is convenient to detect and maintain; a side-in and side-out air path structure is constructed on the outer vertical face of the equipment platform.
本发明属于高效节能空气调节技术和绿色建筑领域,公开了一种多只负压腔沿长边设置的空调主机和设备平台。空调主机包括翅片管换热器总成、壳体、空调压缩机、气液分离器和风机;翅片管换热器总成包括至少2个翅片管换热器,翅片管换热器包括水平C型翅片管换热器和/或“口”型翅片管换热器;翅片管换热器总成的所有翅片管换热器,均与同一个空调压缩机连接。空调主机设备平台内沿横向设置至少1台空调主机;空调主机的进风配风通道靠近外立面;空调主机的上方设有排风腔,排风腔的出风口设置和/或抵近于外立面。本发明构建空调主机高效换热风路结构提高能量密度;便利空调主机检测维修;实现了设备平台外立面构建侧进侧出风路结构。
Air conditioner main unit with multiple negative pressure cavities arranged along long sides and equipment platform of air conditioner main unit
一种多只负压腔沿长边设置的空调主机及其设备平台
LI CHENGWEI (Autor:in) / LI XIANTING (Autor:in) / XU YANXIAN (Autor:in) / WEI LINLIN (Autor:in) / WANG YUAN (Autor:in) / ZONG PENGPENG (Autor:in) / ZHUGE SHUIMING (Autor:in) / ZHAN FEILONG (Autor:in) / SHI WENXING (Autor:in) / XUE SHISHAN (Autor:in)
22.08.2023
Patent
Elektronische Ressource
Chinesisch
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