It is a crucial part of the rod production equipment that drives the pump in the well from the motor of the pumping units and is manufactured according to the specifications of API Spec 11B, among others.
Our Frequency Inverter offers precise control for electric motors,
Enhance your motors with our inverter, ensuring efficiency and optimal performance.
These solutions provide versatility and performance in industrial and oil and gas environments, ensuring efficient control and reliable protection.
We offer High-Efficiency Industrial Three-Phase Asynchronous Motors and Explosion-Proof Testing in accordance with IEC and NEMA standards.
These motors are designed to meet the highest safety and efficiency standards, providing exceptional performance across various industries. They comply with the rigorous standards set by IEC and NEMA, as well as for explosive environments, ensuring safety in applications involving flammable gases and explosive vapor-air mixtures.
These motors serve as a reliable driving force in various sectors, including oil, chemicals, textiles, metallurgy, city gas transportation, sugar cane processing, grains and oils, paper, pharmaceuticals, and more. Their versatility makes them suitable for environments with flammable components.
Our motors meet Class 2 of GB18613-2012, complying with the energy efficiency limit values and ratings for small and medium three-phase asynchronous motors. Notable features include high efficiency, energy savings, a wide temperature rise margin, long operational life, low vibration, low noise, and overall reliability.
To meet individual user needs, our motors can be equipped with auxiliary devices such as winding temperature sensors, bearing temperature sensors, temperature transmitters, and heaters, enhancing the overall functionality and safety of the system.
The YBX3 series motors feature explosion-proof ratings, including Exd II AT4 Gb and Exd II BT4 Gb, ensuring their suitability for hazardous environments.
Operating Conditions:
In the dynamic world of oil production, where the composition and flow rates of oil, gas, water, and solids are constantly changing, artificial lift systems play a crucial role. This is where the PCP pump comes into play: a robust solution that simplifies production and withstands erosive attacks.
All our products comply with the most stringent international standards, such as ISO 9001, API 11AX, and API 674.
The vertical head at the surface of the progressive cavity pump (PCP) is an integrated intelligent drive and control equipment composed of an explosion-proof motor, a gearbox, and a frequency converter. It is a high-efficiency and energy-saving surface drive product developed for progressive cavity pumps in oil fields. We have adopted several patented technologies, advanced technology, superior performance, stable operation, safe and reliable work, energy savings, and environmental protection.
The custody transfer system includes: Flow meter, Filter, Pressure/flow control, Quality monitor, Flow tester, Flow calibration bench, Drainage system, Power supply, Flow computer, Dedicated control room, Telemetry, Security system.
We are a provider of "turnkey" high-standard complete measurement solutions for the oil and gas industry. We offer a wide range of custody transfer skids with professional design, engineering, procurement, project management, and after-sales support. Our oil measurement systems are designed according to the high-quality requirements of Russian GOST, Gosgortkehnadzor, and American NIST (API) and state regulations.
The selection of the correct components and measurement techniques is essential for the overall performance of the system. Our experienced engineers can assist in the initial design to ensure that the final measurement system meets the project requirements and its stakeholders. The selection is based on process conditions, system cost, and its suitability for the project.
Typical liquid measurement techniques that would be considered include:
Our full-time staff of competent mechanical and electrical engineers, along with trained and certified welders, ensures that your systems comply with ASME/ANSI and API standards, X-ray or any other testing method.
The Multiphase Flow Meters are non-intrusive, inline devices that measure the flow rates of individual phases in oil and gas well flows without the need for separation.
This multiphase measurement technology is applicable to a wide range of well conditions and varying flow regimes, providing accurate and reliable flow rate measurements, from marginal low-flow wells to high-production wells, including measurements of heavy oil and wet gas.
They can be installed at the wellhead, in the flow line, or in the test manifold.
Since the launch of this technology in 1994, we have been committed to a process of continuous innovation and improvement, resulting in the implementation of this innovative technology worldwide and over 50,000 successful well tests for our diverse clients.
The incorporation of LiveFlo multiphase meters provides our clients with significant reductions in initial capital expenditure and reduced recurring operational costs for their projects.
At the same time, the equipment can leverage real-time cloud computing, enabling timely and informed decisions that ultimately lead to maximizing well and field productivity.
From drilling and cleanup stages to stable production phases, the meters provide extremely reliable, accurate, and repeatable well data, a critical component for determining the long-term plan for the well and optimizing overall field production.
The ultrasonic gas flow meter is ideal for a wide variety of applications, including the supply, transmission, and distribution of most dry gases in fields such as underground air storage, power stations, petrochemical industry, aluminum smelters, and more. The ultrasonic meter can measure a broad range of gases, including natural gas, compressed gas, air, fuel gas, corrosive gas, toxic gas, high-purity gas, etc.
The Coriolis mass flow meter offers the best performance in measuring mass flow, density, and temperature, as well as calculating volumetric flow, total flow, and fluid composition in real-time. Currently, it has three styles available: M-type sensor, U-type sensor, and S-type sensor. Each series has its own compact and remote meters.
In general, a typical mass flow meter consists of a flow sensor and a signal transmitter. The flow sensor is designed to equip two flow tubes for vibration, resulting in signals for measurement capture; the signal transmitter uses a digital signal processor (DSP) and a dynamic vibration balance (DVB) circuit to provide a fast yet accurate response in measurement. Additionally, on-site node configuration, diagnostics, and data logging are easily managed through HART or Modbus RTU communication.
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