Abstract: The installation steps and instruction information of the Suerba flow meter are provided by the excellent flow meter and flow meter manufacturers and quotation manufacturers. The installation steps and instructions of the Suba flowmeter The main uses of the Suba flowmeter are very extensive. It can measure any gas and liquid with very good accuracy and stability, especially it can be repeated measurement, further. For more flowmeter manufacturers to select models and price quotations, you are welcome to inquire. The following are the installation steps and instructions for the details of the Suerba flowmeter. The installation steps and instructions of the Suba flowmeter The main uses of the Suba flowmeter are very extensive. It can measure any gas and liquid with very good accuracy and stability, especially it can be repeated measurement, further improving the accuracy of the measurement. The Suba flowmeter is a measuring tool that is very easy to install and not easy to break. These features are one of the reasons why many people love it, and its use in the industry is the most extensive. Although there are many people who use it, people are not very clear about the steps of using the Suba flowmeter. The following is a brief introduction to some related steps. First, the specific installation location and installation requirements must be determined before using the Suba flowmeter. Only a good understanding can ensure the fast installation and use; second, the drilling steps are very important. When measuring with a flowmeter, it is necessary to drill holes on the measurement objects. The positions of the holes are different, and the objects to be measured are also different. The third step is to weld the Suba flowmeter to the welding object. After installing the flowmeter to a fixed position, the horizontal position can be measured well, but be sure not to prevent some small debris from flowing into it before welding. inside the flowmeter, otherwise it will cause damage to the flowmeter. The installation of the Suba flowmeter should consider the positioning of the flowmeter, the liquid flow direction, the length of the upstream and downstream direct sections, the diameter of the piping, environmental influences (temperature, electromagnetic radiation, corrosion), vibration, and valve installation. , pipeline support and other factors. Generally, the flow diameter and the piping diameter are required to be consistent and concentric. The length of the upstream straight pipe usually depends on the form of the upstream resistance (reduced pipe, expanded pipe, elbow, valve). Generally, the length of the upstream straight pipe should be guaranteed to be 20D and the downstream 5D (where D is pipe diameter). When the upstream resistance member is a valve or a stop valve, the length of the upstream straight pipe section must be no less than 40D. The installation site of the flowmeter should avoid high temperature, corrosion, electromagnetic radiation, and vibration sources. When the vibration is strong, support should be considered to reduce the influence of the amplitude. When the Sulba flowmeter is used for control loop measurement, it is recommended to install the flowmeter downstream of the regulating valve. Usually in order to avoid vibration or some unpredictable reasons, a throttle ring, expansion section or storage tank is installed upstream of the flow meter to partially absorb the vibration and shock of the fluid, which is especially important in the control loop. If the vibration in a certain direction is predicted, it should be avoided to install the Sorba flowmeter in a place where the direction of the vortex lift is consistent with the direction of the vibration. When the Suerba flowmeter is installed in a horizontal pipeline, the ultrasonic probe should be in the middle position on both sides of the horizontal pipeline (that is, the vortex generator is in a vertical position up and down). This is because the air bubbles are easy to gather above the pipe, and the large foreign objects flow along the bottom of the pipe, which will prevent the ultrasonic wave from passing through. The installation in the above-mentioned way can effectively avoid the above phenomenon and bring benefits to the measurement. Ensuring that the inner diameter of the pipeline is the same as the diameter of the flowmeter is the basic requirement of the manufacturer for the user to use the flowmeter. However, in actual use, it is shown that due to the different caliber standards of the flowmeters of foreign manufacturers, there are differences between the standard inner diameter of the pipeline and the inner diameter of the national standard pipeline in my country under the same nominal diameter. In addition, when the engineering diameter is the same, the wall thickness of the pipe is also different due to the different pressure grade requirements. Users often ignore the problem of pipeline matching when selecting and installing the Suba flowmeter, which is easy to cause additional errors. Features and uses of Sorba flowmeter The Sorba flowmeter has become an ideal product to replace the orifice plate because of its simple installation, low pressure loss, high strength, no wear and tear, and no leakage. Suba flowmeter can be widely used in industrial and mining enterprises to measure the flow of blast furnace gas, compressed air, steam and other liquids and gases. 1. The unique internal secondary averaging structure provides high precision (reading±1%) and high repeatability (±0.1%). 2. The outer impact tube is made of a single piece of material without welding. Compared with similar products welded by two-body structure, it naturally has excellent strength, and it is also convenient to choose high temperature and corrosion resistant materials. a. The honeycomb hexagonal stable structure produces a unique beam distribution shape, which ensures the stability of the low-voltage signal, and the differential pressure generated is higher than that of similar products, which improves the range ratio. b. It is suitable for square or rectangular pipes. c. For the unavoidable clogging problem of similar products when measuring dirty media, there are online pull-out models or manual and automatic purging solutions and devices to achieve non-stop maintenance. d. The uniform velocity tube + three-valve group + temperature and pressure compensation + transmitter form an integrated structure, which is easy to use. e. No flow coefficient drift, long-term stability. f. *Provide intuitive resonance check calculation to ensure long-term stable operation
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