一种高效节能流体物质热交换设备

By combining a multi-layered, equally spaced stacked heat exchange element structure with an air conditioning component, the problem of insufficient heat exchange due to countercurrent flow of hot and cold fluids in existing equipment is solved, achieving a highly efficient and energy-saving heat exchange effect and enhancing heat exchange capacity and stability.

CN122408522APending Publication Date: 2026-07-17高庆利

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
高庆利
Filing Date
2026-06-15
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing heat exchange equipment does not adopt the method of dividing the cavity into single and double number sections for flow guidance, which makes it impossible to form a counter-current heat exchange system for hot and cold fluids. In addition, it lacks a multi-layer composite heat exchange structure, resulting in insufficient heat exchange between hot and cold fluids and low heat exchange speed and efficiency.

Method used

It adopts a multi-layer, equally spaced stacked heat exchange element structure, with hot and cold fluids flowing in opposite directions. The fluid inlet and outlet are arranged at an angle and the inlet and outlet of adjacent elements are staggered. It is equipped with a heat exchange substrate made of high thermal conductivity material, and the air intake flow is monitored and adjusted in real time through an air adjustment component to ensure uniform distribution.

Benefits of technology

It effectively lengthens the fluid flow path, increases the heat exchange contact area between hot and cold fluids, improves the heat transfer speed and heat exchange capacity, achieves a highly efficient and energy-saving heat exchange effect, and ensures stable heat exchange conditions by dynamically adjusting the air volume.

✦ Generated by Eureka AI based on patent content.

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Abstract

本发明涉及热交换设备技术领域,公开了一种高效节能流体物质热交换设备,包括密封壳体,所述密封壳体的内部中间位置堆叠设置有多个热交换元件,其中上下两个相邻的所述热交换元件的同一端分别开设有错位的冷风进口和热风冷却出口,上下两个相邻的所述热交换元件的另一端分别开设有错位的冷风加热出口和热风进口,其中所述冷风进口和冷风加热出口呈斜角开设在同一个热交换元件上,所述热风进口和热风冷却出口呈斜角开设在同一个热交换元件上。采用多层等间距堆叠的热交换元件结构,冷热流体呈逆向流通模式,热量传递速度更快,多层叠加结构让换热能力极大增强,实现高效热交换。
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