我們的品牌

Impact-Company-Logo-English Black-01-177x54

歡迎造訪施耐德電機全球網站

歡迎訪問我們的網站
		
我们今天能为您提供什么帮助?
How to calculate necessary Air flow for cabinet cooling using Altivar variable speed drives heat dissipation.

Article available in these languages: Czech

The most precise method for calculating heating/cooling system for cabinet is to use dedicated software for cabinet thermal calculation. ProClima software is available on schneider web.
Besides that, it is also possible to calculation required fan flow manually, though certain inaccuracy will be caused by not-knowing the amount of heat dissipated by cabinet walls.
Manual calculation can be done based on following known (input) data:
- Total heat produced inside cabinet (W) - Ptotal
- Max ambient temperature (of cooling air) (deg.C) - Tomax
- Max allowed temp inside cabinet (deg.C)  - Timax
- Parameters of cooling air (specific thermal capacity c, density ro)

Min air flow is calculated as :

Qmin=
Ptotal /(ro*c*(Timax-Tomax))

Where Qmin is in m3/s
Ptotal in kW
ro in kg/m3
c in kJ/(kg.K)
Tomax, Timax in degrees celsius

To get value of flow in m3/h, multiply result by 3600.
Qmin (m3/h) = 3600 * Qmin (m3/s)

In case of air:
ro=1.1kg/m3 (at 40 degrees Celsius)
c= aprox 1kJ/kgK

Example:
Devices inside cabinet produce total heat losses 560W (Ptotal=0.56kW)
Max operational temperature for devices inside cabinet is 50 degrees celsius (Timax=50 C)
Temperature of cooling air (ro=1.1kg/m^3, c=1kJ/KgK) never exceeds 25 degrees celsius (Tomax=25 C)

Min amount of air is then:

Q [m3/s] =0.56 kW /(1.1 kg/m3 * 1kJ/kgK * (50-25)K) = 0.56kW / 27.5 kJ/m3 = 0.020 m3/s = 20 liters/s
Q [m3/h] = 3600 * Q [m3/s] = 3600 * 0.020 = 73 m3/h

施耐德電機Taiwan

探索更多
系列:
探索更多
系列:
  • 產品文檔
  • 軟體下載
  • 產品選型工具
  • 產品替代和替換
  • 幫助和聯絡中心
  • 尋找我們的辦公室
  • 取得報價
  • 施耐德電機社群
  • 人才招募
  • 公司簡介
  • 舉報不當行為
  • 無障礙
  • 新聞中心
  • 投資者
  • 專業洞察
  • 台灣施耐德電機學院
  • 綠色影響力落差調查
  • Schneider Go Green 2025
  • 隱私政策
  • Cookie通告
  • 使用條款
  • Change your cookie settings