The approach to designing schemes based on the basic principles of fluid thermodynamics
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The approach to designing schemes based on the basic principles of fluid thermodynamics
1. The raw materials of chemical plants in the chemical manufacturing industry are heated and heated, and some powdery materials are dried under certain working pressure. The entire process of chemical plants and spray drying are also affected.
2. Heating of nitrogen oxides, including petroleum crude oil, fuel oil, light fuel oil, high-temperature heat transfer oil, automotive engine oil, paraffin, etc
3. The processing technology involves heating up fluids such as tap water, saturated steam, molten salt, nitrogen (air) gas, and blast furnace gas that require heating.
4. Due to the selection of good explosion-proof structures, machinery and equipment can be widely used in explosion-proof sites such as chemical plants, military, crude oil, gas, offshore platforms, ships, mines, etc.
Characteristics of action
1. Small size and high output power: The key selection of the heater is beta ray tube shaped electric heating material
2. Fast thermal response, high-precision temperature control, and high comprehensive thermal efficiency.
3. High heating temperature: The temperature of the heater design scheme reaches 850 ℃ during operation.
4. The temperature of the material inlet and outlet is uniform, and the temperature control is high-precision.
5. Wide application coverage and strong adaptability: This heater can be used in explosion-proof or general places, with explosion-proof levels up to D Ⅱ B and C, and compressive strength up to 20MPa.
6. Long lifespan and high stability: The heater is manufactured using unique electric heating raw materials, with a design scheme that has low surface output power load and multiple maintenance options, greatly increasing the safety factor and service life of the electric heater.
7. Fully mechanical automation: According to the principle of the heater circuit, the automatic control system for main parameters such as inlet and outlet temperature, total flow rate, and working pressure can be easily completed according to regulations, and can be connected to the computer network.
8. The environmental protection and energy-saving effects are significant, and the heat generated by electromagnetic energy is basically 100% sent to the heating material.
Fluid explosion-proof electric heater is a type of device that converts electromagnetic energy into energy to heat raw materials that need to be heated. During work, ultra-low temperature fluid substances enter the key inlet according to the working pressure effect of the pipeline, and follow the special heat exchange channel system inside the electric heating vessel. By applying the basic principles of fluid thermodynamics in the design scheme, the high-temperature thermal energy caused by the operation of the electric heating material is carried away, causing the temperature of the heated substance to rise, and the inlet and outlet of the electric heater obtain the high-temperature substance specified in the processing technology. The internal automatic control system of the electric heater automatically adjusts the power of the electric heater based on the temperature sensor data signal at the output port, so that the material temperature at the output port is uniform; When the scalding component overheats, the separate overheating protection device of the scalding component immediately disconnects the heating switch power supply to prevent the overheating of the heating raw materials from causing slagging, mold, carbonization, and in severe cases, burning of the scalding component. Reasonably increase the service life of the electric heater.
www.superbheater.com
The approach to designing schemes based on the basic principles of fluid thermodynamics
1. The raw materials of chemical plants in the chemical manufacturing industry are heated and heated, and some powdery materials are dried under certain working pressure. The entire process of chemical plants and spray drying are also affected.
2. Heating of nitrogen oxides, including petroleum crude oil, fuel oil, light fuel oil, high-temperature heat transfer oil, automotive engine oil, paraffin, etc
3. The processing technology involves heating up fluids such as tap water, saturated steam, molten salt, nitrogen (air) gas, and blast furnace gas that require heating.
4. Due to the selection of good explosion-proof structures, machinery and equipment can be widely used in explosion-proof sites such as chemical plants, military, crude oil, gas, offshore platforms, ships, mines, etc.
Characteristics of action
1. Small size and high output power: The key selection of the heater is beta ray tube shaped electric heating material
2. Fast thermal response, high-precision temperature control, and high comprehensive thermal efficiency.
3. High heating temperature: The temperature of the heater design scheme reaches 850 ℃ during operation.
4. The temperature of the material inlet and outlet is uniform, and the temperature control is high-precision.
5. Wide application coverage and strong adaptability: This heater can be used in explosion-proof or general places, with explosion-proof levels up to D Ⅱ B and C, and compressive strength up to 20MPa.
6. Long lifespan and high stability: The heater is manufactured using unique electric heating raw materials, with a design scheme that has low surface output power load and multiple maintenance options, greatly increasing the safety factor and service life of the electric heater.
7. Fully mechanical automation: According to the principle of the heater circuit, the automatic control system for main parameters such as inlet and outlet temperature, total flow rate, and working pressure can be easily completed according to regulations, and can be connected to the computer network.
8. The environmental protection and energy-saving effects are significant, and the heat generated by electromagnetic energy is basically 100% sent to the heating material.
Fluid explosion-proof electric heater is a type of device that converts electromagnetic energy into energy to heat raw materials that need to be heated. During work, ultra-low temperature fluid substances enter the key inlet according to the working pressure effect of the pipeline, and follow the special heat exchange channel system inside the electric heating vessel. By applying the basic principles of fluid thermodynamics in the design scheme, the high-temperature thermal energy caused by the operation of the electric heating material is carried away, causing the temperature of the heated substance to rise, and the inlet and outlet of the electric heater obtain the high-temperature substance specified in the processing technology. The internal automatic control system of the electric heater automatically adjusts the power of the electric heater based on the temperature sensor data signal at the output port, so that the material temperature at the output port is uniform; When the scalding component overheats, the separate overheating protection device of the scalding component immediately disconnects the heating switch power supply to prevent the overheating of the heating raw materials from causing slagging, mold, carbonization, and in severe cases, burning of the scalding component. Reasonably increase the service life of the electric heater.
www.superbheater.com







