Skip to main content

High efficiency pitted tube

High efficiency pitted tube refers to make enhancement to the ordinary inside and outside smooth surface of the heat exchange tube, so that the overall heat exchange effect can be significantly improved.

High efficiency pitted tube Application

High efficiency pitted tubeMainly used in lithium bromide air conditioning (non-electric air conditioning) and other industries

High efficiency pitted pipe refers to make enhancement to the ordinary inside and outside smooth surface of the heat exchange tube, so that the overall heat exchange effect can be significantly improved.

Strengthening form : to the internal and external surfaces of the heat exchange tube, through extrusion and rolling, processing a variety of shapes (spiral squamous tooth, bump and groove, etc.), to change the constant liquid flow field distribution, formation of turbulent flow, or to improve the effect of convection. Meantime through the physical form processing, extending internal and external surface to increase the heat transfer area of the internal and external surface, to improve the heat transfer coefficient of heat exchange tube and improve the overall heat transfer effect.

We provide 3 types of below:

1. The outer wall pattern, the inner wall is smooth.

2. Inner and outer wall pattern.

3. High heat pipe with smooth inner wall pattern and outer wall.

Links to Lord Fin Tube:

Brazed Copper Finned Tube

Laser Welding Finned Tube

Longitudinal Finned Tubes

Rectangular/HH Finned Tube

Embedded Finned Tube

HFW Solid Finned Tube

HFW Serrated Finned Tube

Extruded Serrated Finned Tube

Finned Tube Heat Exchanger

Comments

Popular posts from this blog

What is tube sheet layout?

What is tube sheet layout? A tube sheet is a component used in shell and tube heat exchangers and other types of heat transfer equipment. It is a flat plate with holes drilled in it, through which tubes are inserted and secured. The tube sheet serves as a barrier between the two fluids, allowing heat to be transferred from one to the other. The layout of the tube sheet depends on the design of the heat exchanger, which includes the number of tubes, the size of the tubes, and the spacing between the tubes. The layout is typically determined using computer-aided design (CAD) software, which can optimize the placement of the tubes to achieve the desired heat transfer performance. In general, the tubes are arranged in a triangular or square pattern on the tube sheet. The triangular pattern is often preferred because it provides better support for the tubes and reduces the risk of vibration and damage. The spacing between the tubes is also important, as it affects the flow rate and pressure

Finned tube bundle|Finned pipe bundle

1. What is a finned tube bundle? Finned tube bundle composed of multiple finned tubes arranged according to certain rules is called finned tube bundle. A finned tube heat exchanger can be composed of one or more finned tube bundles. 2. What is the composition of the finned tube bundle? Finned tube (multiple tubes): basic element of heat transfer. Tube box (header) or tube plate: the header, elbow or steel plate connecting the two ends of the fin tube. When the finned tube is connected with the header or tube sheet, the spacing between the finned tubes is fixed, and the tube box forms a continuous flow channel for the fluid in the tube. Frame: support and fix the whole finned tube bundle. 3. Finned tube bundle arrangement? In a  finned tubes bundle , the selection of fin tube arrangement is crucial. There are two types of arrangement: staggered and sequential. The so-called staggered arrangement refers to the cross arrangement of pipes in the air flow direction, while the in-line arran

What is heat exchange tube sheet?

What is heat exchange tube sheet? A heat exchange tube sheet is a component used in heat exchangers, which are devices that transfer heat from one fluid to another. The tube sheet is typically a flat, circular plate that separates the two fluid streams and contains holes through which the heat exchange tubes pass. The tubes are typically sealed into the tube sheet by welding or expansion, and the sheet is often made of materials such as carbon steel, stainless steel, or titanium. The purpose of the tube sheet is to provide a rigid support structure for the heat exchange tubes and to ensure that the tubes are properly aligned and spaced for efficient heat transfer. The tube sheet also serves to contain the fluid streams and prevent them from mixing, which could reduce the efficiency of the heat exchange process. Tube sheets can be designed for various types of heat exchangers, such as shell and tube, double pipe, and plate heat exchangers. The design of the tube sheet is typically based