Submeraged Coooling Two-Phase Immersion System For Data Centers
Advantages and disadvantages of dry cooler immersion cooling system
Pros: - High build quality by necessity - Up to 98% reduction in cooling power - Long life fluid (20 years) - High cooling capacity (4kw per liter) - Equipment is dry and clean when removed - Fairly simple plumbing - Excellent scaling | Cons:
- Not ideal at small scales - Control costs are the same for 250kW and 10kW - Controls are complex and expensive - Cannot use HDDs - Tanks must be stainless - Fluids leak easily so quality control must be tightly adhered to |
The submeraged cooling system diagram by dry cooler:
Shenglin and Shenglin partner can offer one-stop solution:
For bitcoin mining farm, if use immersion cooling system, Shenglin dry cooler is the most cost-effective way to remove heat and a necessary component of the immersion cooling system, We designed a full range of immersion optimized dry coolers. From 5kW single fan unit to the V-shaped 48-921kW dry coolers. Made in China, sized to your needs.
How to design a dry cooler?
Tell Shenglin the datas as following:
A. Required electrolyte inlet temperature?
B. Required electrolyte outlet temperature?
C. Electrolyte flow?
D. Ambient temperature?
E. Supply power(voltage-Hz-phase)
G. Any other requirements ?
Technical parameter of dry cooler
Dry cooler FLAT SERIES SINGLE ROW FANS
H*FS*91 H*FS*125 H*FS*180 | Van Dim mm | * | H*FS191 H*FS1125 H*FS1180 | H*FS291 H*FS2125 H*FS2180 | H*FS391 H*FS3125 H*FS3180 | H*FS491 H*FS4125 H*FS4180 | H*FS591 H*FS5125 H*FS5180 | H*FS691 H*FS6125 H*FS6180 | H*FS791 H*FS712 H*FS7180 | H*FS891 H*FS8125 H*FS8180 |
Rated Capacities (kW) Heat Exchange Surface (㎡) | ||||||||||
Fluid Coolers | 910 | D | 61kW-648kW 120㎡-2307㎡ (Water/Ta25℃/Tin40℃/Tout35℃) | |||||||
1250 | 138kW-1528kW 302㎡-4542㎡ (Water/Ta25℃/Tin40℃/Tout35℃) | |||||||||
1800 | 198kW-1920kW 363㎡-5084㎡ (Water/Ta25℃/Tin40℃/Tout35℃) | |||||||||
Freon Condensers | 910 | F | 73kW-764kW 120㎡-2307㎡ (R404A/Ta35℃/Tk50℃) | |||||||
1250 | 166kW-1549kW 302㎡-4842㎡ (R404A/Ta35℃/Tk50℃) | |||||||||
1800 | 230kW-1920kW 330㎡-5103㎡ (R404A/Ta35℃/Tk50℃) | |||||||||
Ammonia Condensers | 910 | A | 72kW-779kW 141㎡-2721㎡ (NH3/Ta35℃/Tk50℃ ) | |||||||
1250 | 181kW-1554kW 351㎡-5625㎡ (NH3/Ta35℃/Tk50℃ ) | |||||||||
1800 | 262kW-1986kW 421㎡-5907㎡ (NH3/Ta35℃/Tk50℃ ) | |||||||||
Gas Coolers | 910 | G | 49kW-862kW 96㎡-1824㎡ ( CO2/Tair32℃/Tin113℃/P94Bar/Tout34℃) | |||||||
Oil Coolers | 910 | O | 49kW-1041kW 120㎡-2307㎡ (OIL ISO VG 46/Ta35℃/Tin85℃/Tout60℃) | |||||||
1250 | 75kW-2021kW 302㎡-4842㎡ (OIL ISO VG 46/Ta35℃/Tin85℃/Tout60℃) | |||||||||
1800 | 92kW-2505kW 330㎡-5103㎡ (OIL ISO VG 46/Ta35℃/Tin85℃/Tout60℃) | |||||||||
Fan Model | 910 | EC | W3G910KU2503 (2.55kW) or FN091-ZIQ.GL.V5P1 (3.2kW) | |||||||
910 | AC | W6D910GB0101 (2.02kW) or FN091-SDS.6N.V7P2 (1.85kW) | ||||||||
1250 | EC | 160M2-8P-5.5kW/720RPM/1250_5-5_LP_39°_PPG_9W2L | ||||||||
1250 | AC | 160M2-8P-5.5kW/720RPM/1250_5-5_LP_39°_PPG_9W2L | ||||||||
No of Fans | 1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 | ||
Overall Dimensions | 910 | Lenth-1 | 1980 | 3480 | 4980 | 6480 | 7980 | 9480 | 10980 | 12480 |
Lenth-2 | 2280 | 4080 | 5880 | 7680 | 9480 | 11280 | 13080 | 14880 | ||
Width | 1230 | |||||||||
Height | 1740 (Including 800Leg) | |||||||||
1250 | Lenth | 2600 | 4600 | 6600 | 8600 | 10600 | 12600 | 14600 | 16600 | |
Width | 2280 | |||||||||
Height | 1970 (Including 800Leg) | |||||||||
1800 | Lenth | 3000 | 5400 | 7800 | 10200 | 12600 | 15000 | 17400 | // | |
Width | 2280 | |||||||||
Height | 2170 (Including 1000Leg) |