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I’m considering purchasing a flow meter. Its main purpose is to measure steam flow for use in trade settlements. Note: Our unit does not have enough steam, so we plan to connect a steam pipeline from another company to supply steam for our production needs. The main parameters are as follows: Medium: superheated steam; Operating pressure: 1.3 MPa; Medium temperature: 225 degrees Celsius; Operating flow rate range: 0–30 T/h; Normal flow rate: 25 T/h; Pipe diameter: DN200; Installation style: horizontal. There have been changes regarding the post from yesterday – the price of the mass flow meter is too high and unacceptable; therefore, it has been replaced with a vortex flow meter. Please provide brands and models.
This post was last edited by twinss on 2017-11-2 at 17:23. Vortex flow meters are a cost-effective option with a precision of 1%; be sure to include temperature and pressure compensation in the calculations.
For trade settlements, use Yokogawa’s hassle-free solution. Maybe we don’t need an orifice plate either
The Rosemount vortex flowmeter works well; for temperature measurement, it’s recommended to use a separate unit that includes temperature and pressure compensation. In fact, orifice plates are the most commonly used for steam metering.
Split-type vortex street with temperature and pressure compensation, E+H, Rosemount, or Coriolis.
Orifice plates are commonly used for the trade settlement of steam flow; if the pressure loss is high, a nozzle flow meter can be used instead. These two types of epidermal materials are durable; choose one style for both watches. Thermal and pressure compensation is essential.
Anhui Tiankang + Flanged TK2100F3A2HDNT02B3K00M5; Clamping type TK2100W3A2HDNT02B3K00M5. After estimation, the working pressure is 1.3 MPa; at a medium temperature of 225 degrees Celsius, the density of superheated steam is approximately 6 Kg/m3. When converted to volume, the range is approximately 0–5000 m3/h, and DN200 is just right for this
It is not advisable to use a mass flow meter for measuring steam, as it results in high pressure losses and is not cost-effective. It is most appropriate to use a temperature-compensated or multi-parameter vortex flow meter, as it has low pressure loss and can directly measure the mass flow rate of steam.