一种节能型水冷制冷机组系统

By optimizing the airflow design and air volume distribution through the vertical L-shaped series arrangement of the condensers and the intelligent control module, the problems of air volume loss, high air resistance, and poor space adaptability of water-cooled units in commercial vehicles are solved, achieving high efficiency and energy saving and autonomous operation capability, ensuring stable output of cooling and heating performance and compact equipment adaptation.

CN122408280APending Publication Date: 2026-07-17SHANGHAI YIDA AIR CONDITIONER

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
SHANGHAI YIDA AIR CONDITIONER
Filing Date
2026-04-20
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

The existing condenser layout of water-cooled units in commercial vehicles results in significant airflow loss, high air resistance, uneven airflow distribution, poor space adaptability, complex control logic, and weak autonomous operation capabilities, making it difficult to meet the demands of high-power cooling and heating.

Method used

It adopts a vertical L-shaped integrated structure with two condensers connected in series, and a precise L-shaped layout with three condenser fans. It has a built-in intelligent control module to achieve autonomous adjustment of working status, optimize air path design and air volume distribution, and simplify control signal interface.

Benefits of technology

It improves the heat exchange efficiency and structural space adaptability of the unit, ensures stable output of rated performance of 13kW cooling and 24kW heating, reduces energy consumption, extends service life, simplifies vehicle adaptation and debugging process, and improves versatility and autonomous operation capability.

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Abstract

本发明公开了一种节能型水冷制冷机组系统,属于车载制冷制热设备技术领域,包括两个串联布置的第一冷凝器和第二冷凝器、三个冷凝风扇,冷却液循环泵及内置智能控制模块,所述第一冷凝器和第二冷凝器采用垂直L型串联一体化结构。本发明采用两款冷凝器串联垂直L型一体化布置的核心结构设计,配合三个冷凝风扇的L型精准适配布局,解决现有冷凝器布局导致的风量折损大、风阻高、风量分配不均、空间适配性差等技术问题;同时实现机组仅通过制冷和制热请求信号即可自主完成工作状态调节的功能,提升机组的换热效率、结构空间适配性与工作自主性,保障机组13kW制冷、24kW制热的额定性能稳定输出。
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