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| Comparison Dimension | Water-Cooled | Air-Cooled |
| Cooling Principle | Relies on deionized/distilled water circulation, dissipates heat via water-cooled condenser | Fans drive ambient air to complete heat exchange through air-cooled condenser |
| Installation Requirements | Requires supporting water system (water tank/pipeline/water pump), grounding ≤4Ω, drainage height difference ≥10cm | No water pipeline needed; leave ≥30cm space around the machine, ambient temperature 5-35℃, humidity ≤85% |
| Core Performance | High heat dissipation efficiency, stable temperature control, not affected by ambient temperature, suitable for continuous operation | Medium efficiency, prone to performance degradation in high-temperature environments, more suitable for intermittent tests |
| Cost & Maintenance | High initial investment; needs monthly water change and tank cleaning, regular inspection of pipeline seals and rust prevention | Low initial investment; only needs air filter cleaning 1-2 times a month and fan inspection |
| Applicable Scenarios | Industrial laboratories, high-power equipment (volume >100L), continuous operation in high-temperature environments | Small and medium-sized laboratories, scenarios without water supply, medium-low power (volume <100L) intermittent tests |
| Key Prohibitions |
Prohibit unqualified water; prohibit blocking filters/drainage ports |
Prohibit frequent start-stop (wait ≥5 minutes after shutdown before restart); prohibit placing flammable and explosive materials |
Core Selection Recommendations
1. Choose water-cooled: For industrial scenarios with high power, continuous operation, high-temperature environment or extremely high requirements for temperature control accuracy (stable water supply required).
2. Choose air-cooled: For general laboratories with limited space, intermittent use and no water supply, pursuing low cost and convenience.