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Zhangjiagang Ruineng Technology Co., Ltd. is a high-tech enterprise specialized in power ultrasonic technology and its applications, integrating research and development, production, and business operations. The products are used in industries such as petrochemicals, gas field production enhancement, food and pharmaceuticals, wastewater and sludge treatment, plastics and rubber products, as well as clothing and daily necessities ; Current main products: ultrasonic de-blocking equipment, LED welding machines, ultrasonic generators, ultrasonic transducers, ultrasonic power supplies, ultrasonic vibration rods, ultrasonic cutting, ultrasonic chemical equipment, ultrasonic extraction devices, ultrasonic sewing machines (wireless sewing machines), ultrasonic atomization equipment, ultrasonic focused cleaning equipment, ultrasonic welding equipment, and ultrasonic processing. “\"Based on innovation, focusing on quality, providing honest service, fostering sincere cooperation, and achieving common development\" is the constant pursuit of RuiNeng People. Delivering high-quality, safe, and reliable technologies and products to customers remains RuiNeng’s eternal principle. We will keep pushing beyond our limits, as always creating value for our customers by providing higher-quality technologies, products, and services! Zhangjiagang Ruineng Technology Co., Ltd. is one of the leading domestic suppliers of ultrasonic technology. By choosing us as your partner, you can obtain the best solutions based on ultrasonic technology. Heavy oil is crude oil with a high content of asphaltenes and resins, as well as high viscosity. Crude oil with a surface density greater than 0.943 and an underground viscosity greater than 50 centipoise is generally referred to as heavy oil. Ultrasonic viscosity reduction technology is a technique that has developed rapidly in recent years, combining the cavitation effect, thermal effect, and mechanical vibration effect of ultrasonic waves. 1. Cavitation can generate powerful shock forces or high-speed microwave jets, thereby breaking some of the large molecules in crude oil into smaller ones and reducing its viscosity. 2. When ultrasonic waves propagate through crude oil, most of the energy is absorbed by the oil and bound water in the rock layers near the microwave source, which raises the temperature of the oil and water and thereby reduces the viscosity of the heavy oil. 3. When ultrasonic waves propagate through an elastic medium, they significantly increase the amplitude, velocity, and acceleration of the elastic particles. This leads to greater relative motion between smaller molecules and larger molecular chains in heavy oil, increasing the friction between molecules and breaking C-C bonds, thereby reducing the viscosity of the crude oil. Ultrasonic viscosity reduction features simple operation, wide application range, low cost, minimal damage to the formation, and low energy consumption, which has led to an increasing focus on it. Acoustic wave viscosity reduction technology is a technique that has developed rapidly in recent years, combining the cavitation effect, thermal effect, and mechanical vibration effect of ultrasonic waves. 1. Cavitation can generate powerful shock forces or high-speed microwave jets, thereby breaking some of the large molecules in crude oil into smaller ones and reducing its viscosity. 2. When ultrasonic waves propagate through crude oil, most of the energy is absorbed by the oil and bound water in the rock layers near the microwave source, which raises the temperature of the oil and water and thereby reduces the viscosity of the heavy oil. 3. When ultrasonic waves propagate through an elastic medium, they significantly increase the amplitude, velocity, and acceleration of the elastic particles. This leads to greater relative motion between smaller molecules and larger molecular chains in heavy oil, increasing the friction between molecules and breaking C-C bonds, thereby reducing the viscosity of the crude oil. Ultrasonic viscosity reduction features simple operation, wide application range, low cost, minimal damage to the formation, and low energy consumption, which has led to an increasing focus on it.