Professional Generator Supplier
  • Selection of enterprise-owned diesel generator capacity
    Selection of enterprise-owned diesel generator capacity
    Selection of enterprise-owned diesel generator capacity There is currently no unified calculation formula in the country for selecting the capacity of self-provided diesel generator sets, so the methods used by designers in actual work are also different: some simply determine it based on 10%-20% of the power transformer capacity; Some are added according to the capacity of fire-fighting equipment; some are selected according to the wishes of investors, which results in inaccuracy in selecting the capacity of self-provided generating units. If the capacity is selected too large, it will cause a waste of investment; if the capacity is selected too small, it will cause a waste of investment in the event of an accident. Cannot meet usage requirements. So, how to choose the capacity of self-provided generating units? After reviewing the information and referring to various experiences and practices of peers, the author summarized the following points: (1) Plan or preliminary design stage The capacity of the self-provided generator is calculated as 10%-20% of the total capacity of the power supply transformer. (2) Construction drawing stage (1) Select generator capacity according to calculated load We know that the electrical load of a building can be divided into three categories: The first category is security load, which is a load that ensures the safety and reliable operation of people and equipment in the building, such as fire pumps, fire elevators, smoke prevention and exhaust equipment, emergency Lighting, communication equipment, important computers and related equipment, etc.; the second category is support load, that is, the basic equipment load to ensure the operation of the building, mainly work area lighting, some elevators, passage lighting; the third category is general load, that is Loads other than the above loads, such as air conditioners, water pumps and other general lighting and power equipment. When calculating the capacity of self-provided generating units, the first type of load must be taken into account, and the second type of load is determined according to the building function and power grid conditions. If the building function requirements are higher or the city power grid power supply is unstable, the second type of load should be considered. Class loads are taken into account, but if the first and second class loads are simply added to select the generator capacity, the selected capacity will be too large, because in the fire-fighting state, only the operation of the fire-fighting equipment needs to be ensured, and the second class load The load is not used; and when the power grid is outage in non-fire-fighting conditions, the fire-fighting equipment is not used. Therefore, the author believes that the larger of the two can be selected as the capacity of the generator set. After the equipment capacity is calculated, the required coefficient Kx is selected according to the actual situation (generally 0.85-0.95), and th...
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    Apr

    09 2024
  • Composition and classification of diesel generators
    Composition and classification of diesel generators
     1. Composition and classification of diesel generators Diesel generator sets for AC power supply, backup and emergency power generation are widely used in many fields of the national economy such as ships and communications. In recent years, the power shortage caused by economic development and uneven resource distribution, especially in the southern coastal areas, has further highlighted the role of diesel generators in the development of the national economy. From hand-started and manned ordinary units to the direction of automation (self-starting, unattended, remote control, remote signaling, telemetry), low emissions and low noise, the technical equipment level of diesel generator sets is constantly improving. Modern diesel generator sets have the characteristics of flexibility, convenience, high degree of automation, low noise and low emissions. With the continuous development of science and technology, the application of some new technologies and new achievements has made modern diesel generator sets have higher intensification, reliability, stability and good emission characteristics, etc., and continue to meet the higher requirements of modern society. (1) Composition Diesel generator set is a type of internal combustion generator set, consisting of a diesel engine, a three-phase AC synchronous generator and a control system (including automatic detection, control and protection devices). The diesel engine, generator and control system (box) of the mobile diesel generator set are all assembled on a common base; while the diesel engine and generator of the larger power stationary unit are installed on a common base welded from steel, and Fixed on a specially designed reinforced concrete foundation, equipment such as the control system and fuel tank of this unit are usually installed separately from the unit. The flywheel housing of the diesel generator and the front end cover of the generator are directly connected in the axial direction using a shoulder positioning method to form an integrated body, and a cylindrical elastic coupling is used to directly drive the generator to rotate through the flywheel. This connection method is fixed together by screws, so that the two are connected into one body, ensuring that the concentricity of the crankshaft of the diesel engine and the rotor of the generator is within the specified range. In order to reduce the noise, diesel generator sets generally need to be installed with special mufflers. In special cases, the unit needs to be fully shielded. In order to reduce the vibration of the unit, shock absorbers or rubber shock absorbing pads are usually installed at the connections between the main components such as the diesel engine, generator, water tank and electrical control box and the public chassis. (2) Classification and functions There are many types of diesel generator sets, which can be divided into the following types according to their structural types, control methods and protecti...
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    Mar

    12 2024
  • How to Check the Working Quality of Cummins Diesel Generator Governor
    How to Check the Working Quality of Cummins Diesel Generator Governor
    How to Check the Working Quality of Cummins Diesel Generator Governor 1.Maintain standards The internal parts of the speed regulator are not allowed to be stuck during operation. The movement of various parts must be flexible, and the matching clearance between parts must meet the technical requirements. 2. Maintenance methods (1) Inspection and maintenance of speed regulating rotor parts: 1) When the flying iron frame and bracket rotate, there should be no jamming phenomenon. The rotor bearing is not allowed to be too loose or blocked or burned out. Otherwise, new parts should be replaced. 2) When the wear of the inner end of the fly iron exceeds 0.3 minutes, it should be repaired by welding repair. 3) When the matching gap between the flying iron seat frame bushing and the telescopic shaft exceeds 0.22mm, the bushing should be replaced with a new one. After the bushing is pressed in, it should be hinged with the telescopic shaft to ensure the matching size with the telescopic shaft. (2) Inspection and maintenance of speed control gear components. . The mating surface of the speed control gear sleeve is not allowed to have major scratches and eccentric wear. When the buffer spring is not equipped, the two should be able to rotate freely. If the buffer spring is found to be greatly deformed or damaged or broken during inspection, it should be replaced with new parts. When the buffer spring is in a free state, there should be a certain gap between the groups, and the gap between each piece should be less than 0.2mm. The transition arc and straight part of the assembled buffer spring should fit closely with the flange of the speed control gear and the shaft sleeve, and the contact length with the outer diameter of the bearing should be greater than half of the circumferential length. (3) Inspection and maintenance of speed regulating spring. After removing the speed regulating spring, a visual inspection should be carried out. If damage, cracks or distortion are found, the spring should be replaced with a new one. If the elastic force of the speed regulating spring does not meet the technical requirements, it should also be replaced. 3.Technical requirements (1) When the connecting pins and pin holes of the speed regulator are seriously worn and cannot be repaired, new parts should be replaced. (2) When the wear amount of the fly iron bushing and pin exceeds 0.15~0.20mm, the bushing should be replaced with a new one or the pin with an enlarged size should be replaced. (3) The weight difference between the two flying irons after repair should be less than 3g. (4) The flying iron seat frame should be able to rotate flexibly relative to the bracket by its own inertial force, and the flying iron seat frame should be able to swing freely on the seat frame.    
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    Feb

    21 2024
  • DC (Direct Current) load consumption
    DC (Direct Current) load consumption
    It's essential to understand the power requirements of your DC load to properly size the power supply and estimate energy consumption. Additionally, efficiency factors may need to be considered, especially if the load operates intermittently or at varying power levels. Diesel generator sets have been widely used in industrial and agricultural production, science and technology, and daily life. However, when purchasing diesel generator sets, many customers always hope to purchase high-power diesel generators in order to save costs. During the long-term operation of the diesel generator set, the parts and components will produce a certain amount of loss. If it is light, it will affect the safe operation of the unit. If it is serious, it will cause the unit to fail to operate normally. So what losses will the diesel generator set produce during operation? 1. When assembling a diesel generator, a radiator will be installed and the shaft will be connected to the generator. At this time, the power of the generator set will be lost by 10% compared to the diesel engine. 2. DC loss, that is, the loss caused by the generator stator current passing through the stator winding. 3. Iron loss, that is, the magnetic loss generated by the generator magnetic flux in the generator, which includes three aspects: magnetic loss, eddy current loss and additional loss generated by the main magnetic flux in the stator core. 4. Excitation loss, that is, the loss caused by the excitation current in the rotor circuit when the generator is running. 5. Additional losses of electrical appliances, losses caused by leakage flux at the end of the generator in its vicinity. Losses caused by various harmonic fluxes. Iron losses caused by sub-harmonics and high harmonics on the surface of the rotor, etc. 6. Mechanical losses, that is, ventilation losses and friction losses of transmission components during operation of the generator set. In order to prevent the wear and tear of generator equipment and ensure the safe operation of the equipment, users are requested to focus on regular maintenance of these parts to improve the quality of maintenance and extend the service life of the generator. If you have any questions about generator maintenance/repair/maintenance/quotation, etc., please call us to consult the technical staff, Our technical staff will explain it to you in detail. Mobile/wechat/whatsapp:0086-13906008114 
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    Jan

    18 2024
  • Do you distinguish between light fuel storage and
    Do you distinguish between light fuel storage and
    Do you distinguish between light fuel storage and "firewood storage" hybrid? As global climate change intensifies and climate governance processes accelerate, "double carbon" actions have become the core of global concern. Climate change directly affects fuel supply, energy production, and the actual resilience of current and future energy infrastructure. The current carbon neutral paths of various developed economies focus on energy transition, using diversified policy tools, focusing on low-carbon, Carbon-negative technological innovation, among which energy storage microgrid technology is the key to achieving the "double carbon" goal of the power system. Microgrid is the main technical form for realizing distributed energy. Energy storage technology, optimal control and energy management technology are the key technologies for building intelligent microgrid. As an important measure to solve the problems of energy intermittency and volatility in microgrids, energy storage technology can not only improve the utilization rate of distributed energy generation, but also effectively ensure the reliability of power supply, improve power quality, and improve system stability. In areas where the power supply network is difficult to cover or where there is no power supply temporarily, an isolated grid self-power supply method using diesel generator sets (hereinafter referred to as "diesel generator sets") is used. Although the diesel generator set under isolated grid power supply solves the power supply problem, it still has many problems: Photovoltaic-Diesel Hybrid: If "Photovoltaic-Diesel Hybrid" refers to a hybrid system of solar photovoltaic power generation and diesel generators, then this may be a solar hybrid energy system. In this system, solar photovoltaic panels and diesel generators work together to provide electricity. Solar photovoltaics are responsible for providing electricity when the sun is shining, while diesel generators come into play at night or when the sun is insufficient.
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    Jan

    10 2024
  • How to resist interference in alternators
    How to resist interference in alternators
    How to resist interference in alternators Generator Set Alternator interference may have a certain impact on circuits and systems. The following are some common methods to deal with motor interference: Shielding: Shielding, such as a metal casing or shielded wire, can be added around a circuit or system to prevent electromagnetic waves radiated by the alternator from entering the circuit or system. Filtering: Add appropriate filters, such as low-pass filters or band-stop filters, to the circuit to remove high-frequency components caused by motor interference. Grounding: Proper grounding can reduce the impact of motor interference on circuits and systems. For example, before grounding, you should determine the grounding point and avoid high impedance in the ground loop. Cable routing: When routing cables, attention should be paid to the route and distance of the cables to reduce the impact of electromagnetic interference. You can use methods such as staying away from the motor, reducing the length of the cable, and avoiding parallel wiring as much as possible. Protection: For high-precision circuits and systems, protective measures such as metal shielding boxes and shielding covers can be used to reduce the impact of motor interference. Special devices: There are some special devices that can be used to resist motor interference, such as differential mode amplifiers, optocoupler isolators, etc. These methods can be used individually or in combination, depending on the circumstances. Voltage stabilization: Add voltage stabilizing devices, such as voltage stabilizing diodes, voltage stabilizing chips, etc., to the circuit to ensure the stability of the circuit power supply and reduce the impact of motor interference. Feedback: Adding a feedback control loop to the system can adjust the motor control signal in real time according to the system output signal to reduce the impact of motor interference. Isolation: Use isolation technology, such as photoelectric isolation, transformer isolation, etc., to isolate interference between circuits and systems and motors. Design: Consider the impact of motor interference in circuit and system design, and adopt reasonable circuit and system design solutions, such as reducing the number of coils and motor current, to reduce the impact of motor interference. It should be noted that the above method does not completely eliminate the impact of alternator interference, but only reduces the impact of alternator interference. In practical applications, multiple factors should be considered comprehensively and appropriate measures should be taken to reduce the impact of motor interference. Additionally, there are some common methods for specific types of motor interference: Stepper generator interference: Use higher power supply voltage, reduce generator current, reduce step angle, improve the design of stepper generator driver, etc. to reduce stepper motor interference. Brushless DC alternator interference: Use higher ...
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    Nov

    29 2023
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