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Hydrophilic Fin Copper Tubes Crypto Mining Cooling Air Dry Coolers

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Hydrophilic Fin Copper Tubes Crypto Mining Cooling Air Dry Coolers

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Large Image :  Hydrophilic Fin Copper Tubes Crypto Mining Cooling Air Dry Coolers

Product Details:

Place of Origin: China
Brand Name: Shenglin
Certification: CE certification
Model Number: SHSL-D1 Series

Payment & Shipping Terms:

Minimum Order Quantity: 1
Price: 590~32000 USD per unit
Packaging Details: Stretch film and Pallet for full container loading
Delivery Time: 35~40days
Payment Terms: T/T, Western Union
Supply Ability: 100 units per month
Detailed Product Description
Tube Material: Copper Tubes Fin Material: Hydrophilic Aluminum Foil Or Epoxy Resin Aluminum Foil
Frame Material: Galvanized Steel Plate Or Stainless Steel Power Supply: 380V/3P/50Hz Or 380V/3P/60Hz
Fan Brand: Usually Chinese Brand Advantage: Reduce Operating Costs
Product Category: Air Dry Coolers Cooling Way: Immersion Cooling
High Light:

Crypto Mining Air Dry Coolers

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Hydrophilic Fin Copper Tubes Crypto Mining Cooling Air Dry Coolers

 

What's Immersion Cooling?

Also known as liquid submersion cooling. It is the practice of submerging computer components (or full servers) in a thermally, but not electrically, conductive liquid (dielectric coolant) allowing higher heat transfer performance than air and many other benefits.
 

Benefits of Immersion Cooling:

 

1. Silent Operations - Whether it’s single or two-phase immersion cooling, liquid cooling keeps your hardware submerged in a dielectric fluid of some type. With air-based cooling, servers require fans and HVAC systems to be running non-stop throughout the day. As a result, some large server rooms with high-density racks experience a noise level reaching almost 80db. Not only is it unbearably loud; these fans can account for roughly 25-30% in additional power required to keep compute equipment on-line. When your hardware remains submerged in a liquid-based system, fans are eliminated, further driving your PUE lower.

 

2. Reduced PUE - Power usage effectiveness (PUE) is the ratio of a data center’s total facility energy to its total IT equipment (ITE) energy. By definition, the most energy-efficient data center would have a PUE of 1.0. But, as we all know, this is nearly unattainable due to the PUE loss that occurs in power transformation and mechanical cooling load.

Legacy or underside air-cooled techniques can struggle to maintain a satisfactory PUE number, operating in the 1.8 to 2.4 range. Modern, purpose-built data centers have achieved significant PUE reductions using air-cooled chillers with closed-loop systems, often hitting a PUE of 1.3-1.5.

With immersion cooling, PUE consistently stays under 1.3, drastically reducing a facility’s energy load. In doing so, immersion-cooled environments operate as some of the world’s greenest data centers.


3. Cost Savings - When it comes to operational overhead, cooling accounts for a large portion of opex. A facility that houses thousands of servers is expected to run 24/7, 365 days a year; with traditional air-cooling, that facility is now also deploying a huge quantity of fans, HVAC and CRAC systems as well. When servers are submerged in thermally conductive cooling solutions, heat is transferred more efficiently, electricity usage is reduced by more than 95%, and power bills are drastically reduced.

 

Technical parameter of Radiators
Dry cooler D3 series parameter(fin space 2.1mm)

Type

D3-042-

1X800

D3-046-

1X800

D3-051-

1X800

D3-087-

2X800

D3-094-

2X800

D3-103-

2X800

D3-125-

3X800

D3-146-

3X800

D3-153-

3X800

D3-175-

4X800

D3-188-

4X800

Capacity Water 35℃ outdoor temp. Inlet 45℃, KW 42.1 46.1 50.6 87.3 93.6 102.9 124.9 145.9 153.3 174.5 187.9
outlet 40℃
20% Glycol Inlet 45℃ 40.8 45.1 49.7 84.5 91.8 100.9 119.4 143 150.4 168.9 184.3
outlet 40℃
Medium Water flow M3/h 7.3 8 8.8 15.2 16.3 17.9 21.7 25.4 26.6 30.3 32.7
Pressure drop kPa 49 69 97 48 98 93 21 97 89 48 98
Air flow M3/h 21454 20531 19696 42906 41061 39390 64364 61585 59087 85811 82120
Fan motor(400V/3N/50HZ) W 1800 1800 1800 3600 3600 3600 5400 5400 5400 7200 7200
A 3.8 3.8 3.8 7.6 7.6 7.6 11.4 11.4 11.4 15.2 15.2
Fan No X φ

1x1

x800

1x1

x800

1x1

x800

1x2

x800

1x2

x800

1x2

x800

1x3

x800

1x3

x800

1x3

x800

2x2

x800

2x2

x800

Sound pressure level dB(A) 50 50 50 51 51 51 53 53 53 54 54
10m
Dimension L mm 2000 2000 2000 3800 3800 3800 5600 5600 5600 3800 3800
W mm 1084 1084 1084 1084 1084 1084 1084 1084 2108 2108 2108
H mm 1328 1328 1328 1328 1328 1328 1328 1328 1328 1328 1328
A mm 1728 1728 1728 3528 3528 3528 5328 5328 5328 3528 3528
B1 mm -- -- -- 1764 1764 1764 1776 1776 1776 1764 1764
B2 mm -- -- -- 1764 1764 1764 1776 1776 1776 1764 1764
B3 mm -- -- -- -- -- -- 1776 1776 1776 -- --
B4 mm -- -- -- -- -- -- -- -- -- -- --
X mm 997 997 997 997 997 997 997 997 997 2021 2021
Inlet φ mm 2” 2” 2” 2 1/2” 2 1/2” 2 1/2” 3’ 3’ 3’ 4” 4”
Inlet φ mm 2” 2” 2” 2 1/2” 2 1/2” 2 1/2” 3’ 3’ 3’ 4” 4”
Product weight(empty) kg 225 233 241 357 373 392 796 527 749 812 1062
 

 

Recently shipped photos:

 

Hydrophilic Fin Copper Tubes Crypto Mining Cooling Air Dry Coolers 0 Hydrophilic Fin Copper Tubes Crypto Mining Cooling Air Dry Coolers 1
Hydrophilic Fin Copper Tubes Crypto Mining Cooling Air Dry Coolers 2 Hydrophilic Fin Copper Tubes Crypto Mining Cooling Air Dry Coolers 3
 

 

The immersion cooling system diagram by dry cooling tower:

Hydrophilic Fin Copper Tubes Crypto Mining Cooling Air Dry Coolers 4

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