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ISO Compact Plate Heat Exchanger Brazing Heat Exchanger Use In Renewable Energy Systems

Nanjing Tenkai Heat Exchanger Co.,Ltd

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ISO Compact Plate Heat Exchanger Brazing Heat Exchanger Use In Renewable Energy Systems

Country/Region china
City & Province nanjing jiangsu
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Product Details

Brazed Plate Heat Exchanger Use In Renewable Energy Systems For Solar Thermal, Geothermal, And Biomass Applications

 

Renewable Energy Systems: Brazed plate heat exchangers play a crucial role in renewable energy systems such as solar thermal, geothermal, and biomass applications, for heat transfer and energy conversion.

 

 

Product Features:

 

 

Compact Size: Brazed plate heat exchangers have a compact and lightweight design, allowing for efficient use of space.

 

 

High Heat Transfer Efficiency: The brazed plates provide a large surface area for heat transfer, resulting in high thermal efficiency and improved performance.

 

 

Excellent Thermal Performance: The brazing process ensures a strong bond between the plates, allowing for minimal thermal resistance and efficient heat transfer.

 

 

Wide Operating Range: Brazed plate heat exchangers can handle a wide range of temperatures and pressures, making them versatile for various applications.

 

 

Quick and Responsive: Due to the compact design and efficient plate arrangement, brazed plate heat exchangers offer rapid heat exchange and quick response to changing conditions.

 

 

Durable and Reliable: The brazed construction provides excellent resistance to corrosion and mechanical stress, ensuring long-term durability and reliable operation.

 

 

Easy Maintenance: The compact design and accessibility of the brazed plate heat exchangers make them easy to clean and maintain.

 

 

Cost-Effective: Brazed plate heat exchangers offer a cost-effective solution for heat transfer applications, with their high efficiency, compact size, and long service life.

 

In summary, brazed plate heat exchangers are known for their compact size, high heat transfer efficiency, excellent thermal performance, wide operating range, durability, and cost-effectiveness.

 

 

 

TYPEB(mmC(mmD(mm)E(mm)

Thickness

(mm)

Weight(Kg)Max Flow (m3/h)Design Pressure (Mpa)
SB1477422061729+2.3N0.7+0.06N81/3/4.5
SB1678422081729+2.24N0.6+0.049N81/3/4.5
SB1895502101657+3.1N0.7+0.06N81
SB20B78423182829+2.3N1+0.08N83/4.5
SB20C774231327810+1.28N0.9+0.07N83/4.5
SB261115031025010+2.32N1.3+0.12N183/4.5
SB26F1075030725010+1.98N1.3+0.1N183/4.5
SB28B1207229024310+2.36N1.5+0.133N183/4.5
SB28C1206329023410+2.36N1.5+0.133N183/4.5
SB301267030725010+2.35N2.2+0.16N183/4.5
SB52A111505264669+2.32N2.6+0.21N183/4.5
SB52B111505264669+2.32N2.6+0.19N183/4.5
SB53106505224669+2.1N2.6+0.27N183/4.5
SB62A1206352847010+2.35N2.379+0.194N183/4.5
SB62B1206352847010+2.35N2.379+0.194N183/4.5
SB651256554048011+2.28N2.5+0.228N183/4.5
SB95A1899261651911+2.7N7.8+0.44N423/4.5
SB95B1899261651911+2.7N7.8+0.44N423/4.5
SB120A24617452845610+2.34N7.2+0.52N423/4.5
SB120B24617452845610+2.34N7.2+0.52N423/4.5
SB19030317969556713+2.3N12+0.61N1001.6/2.1/3
SB200A32018874260314+2.7N13+0.67N1001.5/2.1/3
SB200B32018874260314+2.7N13+0.67N1001.5/2.1/3
SB200E32020774262414+2.7N13+0.67N1001.5/2.1/3
SB20231918874160316+2.85N13+0.957N1002.1/3
SB300370118(95.5)995861(816)17+2.675N20+1.26N2001.6/2.1/3
SB50030417998285417+2.29N26.6+0.93N2002.1/3
SB013902041320113222+2.75N30+1.8N3003/4.5

 

 

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