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Circulator Heating and Cooling Control System

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Circulator Heating and Cooling Control System

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Circulator heating and cooling control system: an energy-saving device that uses hot and cold power cycles for industrial and commercial applications

The circulator heating and cooling control system is an energy-saving equipment that uses the principle of hot and cold power cycle. It uses the working fluid to absorb and release heat in the working environment to generate power, and converts energy into hot and cold effects. This equipment can efficiently realize energy utilization and conservation in industrial and commercial fields.

Working principle: Hot and cold cycles generate power and cold and hot effects to achieve energy conversion

The working principle of the circulator heating and cooling control system is based on the second law of thermodynamics, which is the principle that heat flows spontaneously from high-temperature areas to low-temperature areas. It achieves energy conversion through the following steps:

Heating: The working fluid absorbs heat from the low-temperature area to increase its temperature.

Expansion: The heated working medium expands due to the increase in temperature, generating pressure.

Work output: The expanded working fluid drives the moving mechanism (usually a piston, turbine, etc.) to perform work output, thereby achieving energy conversion.

Cooling: The heat is transferred from the working medium through the cooling system to reduce its temperature.

Compression: The cooled working fluid shrinks due to the decrease in temperature, producing a lower pressure.

Repeated circulation: the working fluid returns to the low temperature area again to absorb heat, and the cycle starts again.

Through the above cycle process, the circulator heating and cooling control system can not only produce power output, but also bring about cooling and heating effects, that is, realizing the functions of cooling and heating during the cycle process.

 

Circulator Heating and Cooling Control System

 

Application areas: circulator heating and cooling control systems play a variety of roles in industry and commerce

Refrigeration and air conditioning: circulator heating and cooling control system plays an important role in the field of refrigeration and air conditioning. It can provide a low-temperature environment through the heat absorption process and help meet the needs of industrial refrigeration, commercial cold chain, and indoor air conditioning.

Heat recovery and utilization: The circulator heating and cooling control system can realize energy recovery and utilization through the process of absorbing and releasing heat. In industrial production, waste heat recycling can greatly improve energy efficiency and energy conservation and emission reduction effects.

Energy conversion: The circulator heating and cooling control system can convert waste heat, low-temperature energy, etc. into power output for driving other equipment or machinery. This is of great significance for improving energy efficiency and reducing dependence on traditional energy sources.

Power generation and heating: circulator heating and cooling control systems are also widely used in the fields of power generation and heating. By utilizing the processes of heating, expansion and compression of the working fluid, it can drive a generator or provide thermal energy to meet the needs of electricity and thermal energy.

Circulator heating and cooling control system helps efficient energy utilization and environmental protection

As an energy-saving device that utilizes the principle of hot and cold power circulation, the circulator heating and cooling control system can achieve efficient utilization and recycling of energy in industrial and commercial fields. Through the diversity of its working principles and application fields, circulator heating and cooling control systems play an important role in refrigeration and air conditioning, heat recovery and utilization, energy conversion, power generation and heating. Its emergence will help improve energy efficiency and reduce dependence on traditional energy sources, while also meeting the needs of environmental protection and sustainable development.

 

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Sistemas de refrigeración y calefacción (serie SUNDI)

(Diseños a medida)

Rango de control de temperatura: -120°C a +350°C

Application: Various Reactors (Microchannels, Glass, Jacketed Reactors, etc.), Distillation or Extraction System, Laboratory, University, Research Institute, Aerospace, Automotive Industry, Semiconductor and Electrical Test, Chemical, Pharmaceutical, Petrochemical, Biochemical, Medical, Hospital, R&D Workshop, Aerospace, Biological and Other Industries.

 

Temperatura Serie -10 ~ +150°C Serie -25 ~ +200°C Serie -25 ~ +300°C Serie -45 ~ +250°C Serie -45 ~ +300°C Serie -60 ~ +250°C Serie -60 ~ +300°C Serie -70 ~ +250°C Serie -80 ~ +250°CSerie -90 ~ +250°C Serie -100 ~ +100°C -25 ~ +200°C una máquina para dos reactores -40 ~ +200°C una máquina para dos reactores
Capacidad de refrigeración1,5 ~ 15 kW1 ~ 200 kW1 ~ 200 kW0,45 ~ 200 kW0,9 ~ 25 kW0,25 ~ 60 kW0,75 ~ 25 kW0,4 ~ 15 kW0,3 ~ 80 kW0,2 ~ 80 kW0,45 ~ 80 kWhasta 10*2 kWhasta 10*2 kW
Nota: Se puede personalizar cualquier rango de temperatura de -150℃ ~ +350℃ y cualquier capacidad de refrigeración.

 


 

Sistemas de refrigeración y calefacción (serie WTD)

(Diseños a medida)

(Microcanales / reactores tubulares especializados)

Rango de control de temperatura: de -70°C a +300°C

Diseño especializado para microcanal (pequeña capacidad de retención de líquido, gran capacidad de intercambio de calor, sistema de circulación de alta caída de presión)

 

Temperatura -70°C ~ +300°C -45°C ~ +250°C -70°C ~ +200°C
Capacidad de refrigeración1,1 ~ 7,5 kW1,5 ~ 5,5 kW11 ~ 50kW
Nota: Se puede personalizar cualquier rango de temperatura de -150℃ ~ +350℃ y cualquier capacidad de refrigeración.

 


 

Circuladores de refrigeración y calefacción

(Diseños a medida)

Rango de control de temperatura: -45°C a +250°C

Application: Various Reactors (Microchannels, Glass, Jacketed Reactors, etc.), Distillation or Extraction System, Laboratory, University, Research Institute, Aerospace, Chemical, Pharmaceutical, Petrochemical, Biochemical, Medical, Hospital, R&D Workshop, Aerospace, Biological and Other Industries.

 

Temperatura Serie -25°C ~ +200°C Serie -45°C ~ +250°C
Capacidad de refrigeración1 ~ 15 kW0,25 ~ 15 kW
Nota: Se puede personalizar cualquier rango de temperatura de -150℃ ~ +350℃ y cualquier capacidad de refrigeración.

 


 

Termostatos de circulación

(Diseños a medida)

Rango de control de temperatura: +50°C a +300°C

Nota: La serie UC puede controlar la temperatura del medio de transferencia de calor. La serie UST no solo puede controlar la temperatura del medio de transferencia de calor, sino también la temperatura del material de reacción.

Temperatura +50°C ~ +170°C (serie UC) +50°C ~ +300°C (serie UC) +50°C ~ +300°C (serie UST)
Capacidad de calefacción5,5 ~ 15 kW3,5 ~ 130 kW3,5 ~ 95 kW
Nota: Se puede personalizar cualquier rango de temperatura de -150℃ ~ +350℃ y cualquier capacidad de refrigeración.

 


 

TCU Sistema de control de temperatura multirreactores

(Diseños a medida)

Rango de control de temperatura: -120°C a +250°C

Application: Various Reactors (Microchannels, Glass, Jacketed Reactors, etc.), Distillation or Extraction System, Laboratory, University, Research Institute, Aerospace, Chemical, Pharmaceutical, Petrochemical, Biochemical, Medical, Hospital, R&D Workshop, Aerospace, Biological and Other Industries.

 

Temperatura Serie -45°C ~ +250°C Serie -120°C ~ +250°CSistema de control de temperatura personalizadoRT+10°C ~ +135°C
Capacidad de calefacción25 ~ 80 kW25 ~ 80 kWA medida25 ~ 300 kW
Nota: Se puede personalizar cualquier rango de temperatura de -150℃ ~ +350℃ y cualquier capacidad de refrigeración.

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