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Steam Generating Heat Pump

Steam Generating Heat Pump

Steam Generating Heat Pump is a device that can collect the waste heat from medium and low temperature waste water and waste gas discharged and wasted by industrial enterprises, and convert it into water or high temperature steam around 100℃ for industrial process or heating use.
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Description
Technical Parameters

Steam generating heat pump is a device that can collect the waste heat from medium and low temperature waste water and waste gas discharged and wasted by industrial enterprises, and convert it into water or high temperature steam around 100℃ for industrial process or heating use. The introduction of this high-temperature heat pump greatly expands the application field of heat pump equipment and reduces the energy waste situation in the industrial field to a greater extent, while replacing traditional oil, coal and electric boiler equipment and reducing pollution emissions, with very good energy-saving and environmental benefits.

 

product-921-550

 

Advantages

 

1. Energy efficient: Steam heat pumps use the principle of thermodynamic circulation to extract heat from the environment and achieve heating and cooling through compression and relaxation condensation. Compared with traditional heating methods, steam heat pumps have higher energy utilization efficiency and consume less energy, which can achieve energy-saving effects of up to 50%.

2. Environmentally friendly and safe: It is a clean energy source that does not use fossil fuels and does not produce any pollutants. At the same time, it is very safe and will not cause fire or explosion, which is very safe for both users and the environment.

3. High reliability: It is a technically mature, stable and reliable equipment, using advanced intelligent control system, which can make intelligent judgment and control according to the actual situation, ensuring the stability and reliability of the equipment. In addition, the steam heat pump also has the characteristics of long life and easy maintenance, which can greatly reduce the user's cost of use and maintenance costs.

 

 

Working Process

 

1. Compression process: low temperature and low pressure refrigerant gas is compressed by the compressor into high temperature and high pressure gas. At this time, the work done by the compressor is transformed into the internal energy of the refrigerant gas, which increases the temperature and pressure, thermodynamically called the adiabatic process.
2. Condensation process: The high temperature and high pressure refrigerant gas from the compressor flows through the condenser and condenses into a medium temperature and high pressure refrigerant liquid by using wind or water to exotherm to the outside world continuously. The refrigerant temperature decreases but the pressure remains unchanged when it is liquefied, which is called isobaric process in thermodynamics.
3. Throttling process: The medium-temperature and high-pressure refrigerant liquid from the condenser is turned into low-temperature and low-pressure refrigerant liquid after throttling by the throttling device. In thermodynamics, it is called isoenthalpy process.
4. Evaporation process: The low-temperature and low-pressure refrigerant liquid from the throttling device flows through the evaporator and evaporates into low-temperature and low-pressure refrigerant gas by continuously absorbing heat to the room with wind or water. The absorbed heat becomes the latent heat of the refrigerant, and although the temperature does not rise much, the internal energy increases a lot. Since the pressure does not change much, it is called isobaric process in thermodynamics.
product-1100-586

product-1100-346

product-1100-340

What is an air source heat pump?

Air source heat pump is a product that uses air as the cooling (heat) source and water as the cooling (heat) medium, and adopts electric drive for cooling and heating, which can achieve

It is a product that can be used for both cooling and heating, and operates stably throughout the year, with the characteristics of environmental protection, energy saving, comfort and stability.

 

Air Source Heat Pump Technology Principle

 

4Q (energy obtained) = 1Q (electrical energy) + 3Q (environmental heat)

According to the principle of inverse Carnot cycle, the unit takes a small amount of electric energy as the driving force and refrigerant as the carrier to continuously absorb the low-grade heat energy in the air that is difficult to use and convert it into usable high-grade heat energy to realize the transfer of low-temperature heat energy to high-temperature heat energy: then transfer the high-grade heat energy to water to make domestic hot water (55℃~60℃) and deliver it to the water end through the hot water supply pipeline to meet domestic hot water and heating The demand for domestic hot water and heating is met through the hot water supply pipeline to the water end.

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