Eine Plattform für die Wissenschaft: Bauingenieurwesen, Architektur und Urbanistik
Finned tube heat exchanger and multi-system heavy-load air conditioner host and equipment platform thereof
The invention belongs to the technical field of efficient energy-saving air conditioners, and discloses a finned tube heat exchanger and a multi-system heavy-load air conditioner host and equipment platform thereof. The finned tube heat exchanger is provided with a heat exchange tube set penetrating through a fin plate side by side in parallel in the short edge direction of the fin plate. The heat exchange tube group is connected to different compressors to construct different air conditioner unit hosts; the air conditioner host comprises at least two air conditioner unit hosts; an air conditioner host is transversely arranged in the air conditioner host equipment platform. Through the combination of a plurality of small-power air-conditioning unit main machines in a plurality of groups of air-conditioning main machines, the width change and partition change of thermal load of a building are more efficiently met, and the elasticity of the air-conditioning system is increased. The invention further comprises a combination of the air conditioner unit host and the air energy water heater host, and the air conditioner unit host and the air energy water heater host are combined into a whole. The utilization coefficient of the whole two-in-one finned tube heat exchanger is improved, and the COP of the air conditioner unit host and the air conditioner unit host (air energy water heater host) is improved.
本发明属于高效节能空调技术领域,公开了一种翅片管换热器及其多系统重负荷空调主机和设备平台。翅片管换热器沿翅片板短边方向并排平行设置穿设于翅片板的换热管组;换热管组连接至不同的压缩机,构建不同的空调单元主机;空调主机包括至少两只空调单元主机;空调主机设备平台内沿横向设置空调主机。通过多组空调主机中的多只小功空调单元主机的组合,更加高效满足建筑物热负荷的宽幅变化、分区变化,增加了空调系统的弹性。本发明还包括空调单元主机与空气能热水器主机组合,空调单元主机空气能热水器主机合二为一。本发明提高整只二合一翅片管换热器的利用系数,提高空调单元主机与空调单元主机(空气能热水器主机)两套系统的COP。
Finned tube heat exchanger and multi-system heavy-load air conditioner host and equipment platform thereof
The invention belongs to the technical field of efficient energy-saving air conditioners, and discloses a finned tube heat exchanger and a multi-system heavy-load air conditioner host and equipment platform thereof. The finned tube heat exchanger is provided with a heat exchange tube set penetrating through a fin plate side by side in parallel in the short edge direction of the fin plate. The heat exchange tube group is connected to different compressors to construct different air conditioner unit hosts; the air conditioner host comprises at least two air conditioner unit hosts; an air conditioner host is transversely arranged in the air conditioner host equipment platform. Through the combination of a plurality of small-power air-conditioning unit main machines in a plurality of groups of air-conditioning main machines, the width change and partition change of thermal load of a building are more efficiently met, and the elasticity of the air-conditioning system is increased. The invention further comprises a combination of the air conditioner unit host and the air energy water heater host, and the air conditioner unit host and the air energy water heater host are combined into a whole. The utilization coefficient of the whole two-in-one finned tube heat exchanger is improved, and the COP of the air conditioner unit host and the air conditioner unit host (air energy water heater host) is improved.
本发明属于高效节能空调技术领域,公开了一种翅片管换热器及其多系统重负荷空调主机和设备平台。翅片管换热器沿翅片板短边方向并排平行设置穿设于翅片板的换热管组;换热管组连接至不同的压缩机,构建不同的空调单元主机;空调主机包括至少两只空调单元主机;空调主机设备平台内沿横向设置空调主机。通过多组空调主机中的多只小功空调单元主机的组合,更加高效满足建筑物热负荷的宽幅变化、分区变化,增加了空调系统的弹性。本发明还包括空调单元主机与空气能热水器主机组合,空调单元主机空气能热水器主机合二为一。本发明提高整只二合一翅片管换热器的利用系数,提高空调单元主机与空调单元主机(空气能热水器主机)两套系统的COP。
Finned tube heat exchanger and multi-system heavy-load air conditioner host and equipment platform thereof
一种翅片管换热器及其多系统重负荷空调主机和设备平台
WEI LINLIN (Autor:in) / LI XIANTING (Autor:in) / ZONG PENGPENG (Autor:in) / ZHAN FEILONG (Autor:in) / SHI WENXING (Autor:in) / WANG YUAN (Autor:in) / ZHUGE SHUIMING (Autor:in) / XUE SHISHAN (Autor:in) / LI CHENGWEI (Autor:in) / XU YANXIAN (Autor:in)
19.09.2023
Patent
Elektronische Ressource
Chinesisch
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