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Working process and performance of fluid electric heater

A fluid electric heater converts electrical energy into heat to heat the material being heated. During operation, a low-temperature fluid medium enters the heater's inlet under pressure through a pipe. It then flows along a specific heat exchange path within the heater vessel, using the principles of fluid thermodynamics to remove the high-temperature heat energy generated by the heating element. This heat increases the temperature of the heated medium, resulting in a high-temperature medium at the heater outlet that meets the process's requirements.

The fluid electric heater's internal control system automatically adjusts the heater's output power based on the output temperature sensor signal, ensuring a uniform medium temperature at the outlet. If the heating element overheats, an independent overheat protection device immediately shuts off the heating power, preventing overheating and the resulting buildup of coking, deterioration, and carbonization, which can lead to burnout in severe cases, effectively extending the heater's service life.

Workflow:

Based on the installation method, fluid electric heaters can be divided into horizontal and vertical types. The heated medium is supplied by pump pressure and absorbs heat energy during flow, reaching the desired temperature for the user's process, before being delivered to the user's end. The intelligent temperature control device and power regulation system at the outlet ensure that the fluid temperature can meet the user's changing process requirements. Furthermore, thanks to internal sensors and various protective devices, if the medium temperature exceeds the set range, the intelligent temperature control system will quickly respond, stopping heating and issuing a fault alarm to prevent damage to the heating equipment.

Equipment Performance:

1. Safe and stable, with a high explosion-proof rating and reliable sealing structure, the product has a long service life.

2. Highly efficient and energy-saving, the sealed structure greatly improves heat transfer efficiency.

3. Automatic and intelligent, with a high degree of automation, utilizing new technologies such as text, touch screen, PLC, and program table, while also applying internationally leading intelligent control technology.

4. Versatile, it can heat, increase temperature, reduce viscosity, and reduce drag for a variety of liquid and gaseous media. 5. Environmentally friendly and clean, this equipment is noiseless, leak-proof, and pollution-free.

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