High-pressured frequency conversion velometer in the cooling water circulation pump application (chart)

Abstract: This paper introduces the application of domestic high-voltage inverter in Quzhou Juhua Sulfuric Acid Plant in Zhejiang Province. The operating data after the frequency conversion of the cooling water circulating pump shows that the reform is successful and the energy-saving effect is obvious. Keywords: high voltage inverter cooling water circulation pump Abstract: The paper introduces the application of high voltage inverter in cooling water cyclic pump in the factory of vitriol THQJ. The running data indicate that the alternation is successful and the effect of saving energy is distinct. Key words: High voltage inverter Cooling water cyclic pump 1. Introduction: Zhejiang Quzhou Juhua Sulfuric Acid Factory is one of the first batch of sulfuric acid production enterprises in China to design, manufacture and install sulfuric acid. It is the largest sulfuric acid production plant in Zhejiang Province. In sulfuric acid production process, the need for water-cooled plate cooling, cooling water circulation pump is an important production process of sulfuric acid equipment, cooling water circulation pump in the past are not speed, the use of outlet valve to control the water flow and pipe network pressure, due to equipment Selection is based on the maximum load conditions to type in the actual operation of the equipment left a larger margin, the cooling water flow and pressure through the cooling water pump out, the inlet pipe on the regulating valve to adjust, causing the motor Operating efficiency is low, resulting in power waste, in order to reduce production costs, after demonstration, the decision to use landscape brand JD-BP37-type high-voltage inverter cooling water circulating pump frequency conversion energy-saving transformation to solve the energy waste problem. Cooling water circulating pump working principle shown in Figure 1, three circulating pump two open one prepared. Figure 1, the cooling water circulation pump working principle Figure 2, the user cooling water circulating pump and supporting the motor parameters: Pump Model: 500S-35 single-stage double suction centrifugal pump; Flow: 561L / S Speed: 970r / min Head: 35m Motor Power: 280KW Voltage: 6000V Current: 35.2A Speed: 985r / min 3, the new scenery JD-BP37 high voltage inverter 3.1 JD-BP37 high voltage inverter Introduction JD-BP37 high voltage inverter using the latest IGBT For the main control devices, all-digital, color LCD touch screen control, high reliability, easy operation, high-performance design for the goal of high-frequency converter. After years of research and development, the products have been widely used in metallurgy, petroleum, chemical, power, cement, water supply and drainage, pharmaceutical, papermaking, sewage treatment and other industries. Become a boutique, by no means accidental. Scenery high-voltage inverter, using a number of low-voltage inverter power unit in series to achieve direct high-voltage output, the use of 6kv high-voltage inverter, transformers have 18 groups to pay edge winding, divided into 6 power units / phase, a total of 18 A unit, using 36 pulse rectifier, the input harmonic components meet the national standard, high-voltage inverter system structure shown in Figure 2, the main circuit of the circuit shown in Figure 3, the bypass branch using SCR module. Figure 2 high-voltage inverter system structure diagram of the main circuit of Figure 3 unit circuit 3.2 JD-BP37-type high-voltage inverter main technical performance 3.2.1 high - high voltage source converter, direct 6KV input, direct 6KV output without any Output transformer or filter, suitable for ordinary high-voltage motor, motor, cable insulation without damage. 3.2.2 high input power factor, current harmonic small, no power factor compensation, harmonic suppression device. 3.2.3 modular design of the unit circuit, easy maintenance, good interchangeability. 3.2.4 High-voltage main loop and the controller for the optical fiber connection, strong and weak electrical isolation, safe and reliable. 3.2.5 perfect fault detection, accurate fault protection and accurate positioning display and alarm. 3.2.6 Built-in PLC, to adapt to the changing needs of the scene. 3.2.7 The control power and high voltage are independent of each other, no high voltage can detect the inverter output, easy to debug on site and train operators, easy to maintain. 3.2.8 power unit after 24 hours of high temperature aging, 150% load test, high reliability. 3.2.9 Chinese Windows interface, color LCD touch screen operation. 3.2.10 can receive and output multiple industrial standard signal. 3.2.11 can print out the operation report. 4, the control principle and electrical equipment circuit diagram inverter drive control 3 # circulating pump, 2 #, 1 # circulating pump open one prepared. Now the cooling jellyfish tube pressure for a given amount, according to the process of the mother tube pressure adjustment circulating pump speed, pressure signal taken from the main network, the target pressure value is set at 0.24Mpa. Electrical equipment transformation circuit diagram shown in Figure 45, high-voltage inverter energy saving situation introduced equipment transformation project completed in January 2005, a high-voltage inverter test success, normal operation, the frequency of 40Hz operation to ensure the normal temperature of circulating water. The energy-saving related data: ⒌ ⒈ power frequency operating data: May 27 14:30 Operating frequency 50Hz Input current 23.8A Input voltage 6KV May 27 21:35 Operating frequency 50Hz Input current 26.4A Input voltage 6KV May 28th 08:00 Operating frequency 50Hz Input current 25.2A Input voltage 6KV May 28 21:00 Operating frequency 50Hz Input current 24.8A Input voltage 6KV May 29 06:25 Operating frequency 50Hz Input current 24.1A Input voltage 6KV Frequency average operating current 24.86A Power factor COSΦ1 = 0.85 ⒌ ⒉ inverter operating data May 27 11:00 Operating frequency 41: 55Hz Input current 13.0A Input voltage 6KV May 27 12:00 Operating frequency 41: 55Hz Input current 13.1A Input voltage 6KV May 27 13:00 Operating frequency 41: 55Hz Input current 13.0A Input voltage 6KV May 27 14:00 Operating frequency 41: 55Hz Input current 13.2A Input voltage 6KV The average operating current of inverter is 13.07A, power The factor is COSΦ

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