Temel Bilgiler
Adet:1
Minimum Sipariş Adedi:1
Nakliye Yöntemi:陆运 - Karayolu taşımacılığı
海运 - Deniz taşımacılığı
özellik numarası:SYL
Ürün Açıklaması
The high - efficiency features of the three - dimensional flow fan are mainly reflected in aspects such as efficiency improvement, energy - saving effects, structural optimization, and intelligent control. Its comprehensive performance far exceeds that of traditional two - dimensional flow fans. The following is a specific analysis:
I. Core Advantages and Technical Principles
1. Based on the Three - Dimensional Flow Theory and CFD Optimization Design
The three - dimensional flow fan designs multi - curved blades and optimizes the airflow path according to the three - dimensional flow theory of turbomachinery and combines with the three - dimensional flow field CFD simulation technology. This reduces flow losses (such as separated flow and vortices), increasing the efficiency by 3% - 15%.
In practical applications, the efficiency of the fan can exceed 90%, meeting the national first - level energy - efficiency standard. For example, in a technical renovation project, the power - saving rate reached as high as 39.6%.
2. Lightweight and Noise - Reduction Design
I. Core Advantages and Technical Principles
1. Based on the Three - Dimensional Flow Theory and CFD Optimization Design
The three - dimensional flow fan designs multi - curved blades and optimizes the airflow path according to the three - dimensional flow theory of turbomachinery and combines with the three - dimensional flow field CFD simulation technology. This reduces flow losses (such as separated flow and vortices), increasing the efficiency by 3% - 15%.
In practical applications, the efficiency of the fan can exceed 90%, meeting the national first - level energy - efficiency standard. For example, in a technical renovation project, the power - saving rate reached as high as 39.6%.
2. Lightweight and Noise - Reduction Design
Weight reduction: The impeller diameter is reduced by 5%, and the overall weight of the machine is reduced by 10%, reducing the operating energy consumption.
Low noise: Through active noise - reduction technology, the noise is reduced by more than 5dB(A), indirectly improving the energy - efficiency utilization rate.
Low noise: Through active noise - reduction technology, the noise is reduced by more than 5dB(A), indirectly improving the energy - efficiency utilization rate.
II. Practical Applications and Energy - Saving Effects
Industrial field case: In the energy - saving technical renovation project of the grate cooler, the three - dimensional flow fan reduced the 24 - hour power consumption from 4,788 kWh to 2,893 kWh, with an hourly power - saving rate of 39.6%, significantly reducing the enterprise's energy consumption cost.
Chemical industry application: The energy consumption of the high - efficiency centrifugal fan is reduced by more than 20% compared with traditional equipment. It can adapt to complex working conditions such as high temperature and high pressure, improving production stability.
Chemical industry application: The energy consumption of the high - efficiency centrifugal fan is reduced by more than 20% compared with traditional equipment. It can adapt to complex working conditions such as high temperature and high pressure, improving production stability.
III. Intelligence and Future Development
The intelligent control system is used to monitor and adjust the operating status of the fan in real - time, optimizing the matching between the rotational speed and the air volume to further achieve efficient energy utilization.
Summary: Through theoretical and technological innovation, the three - dimensional flow fan has achieved breakthroughs in terms of efficiency, energy consumption, and noise control. It has become one of the core equipment for industrial energy - saving renovations, especially suitable for high - energy - consumption scenarios such as industrial kilns and environmental protection projects.
The intelligent control system is used to monitor and adjust the operating status of the fan in real - time, optimizing the matching between the rotational speed and the air volume to further achieve efficient energy utilization.
Summary: Through theoretical and technological innovation, the three - dimensional flow fan has achieved breakthroughs in terms of efficiency, energy consumption, and noise control. It has become one of the core equipment for industrial energy - saving renovations, especially suitable for high - energy - consumption scenarios such as industrial kilns and environmental protection projects.