Air source heat pump technology is an energy-saving and environmentally-friendly heating technology based on the inverse Carnot cycle principle. The air source heat pump system obtains a low-temperature heat source through natural energy (air heat storage), and becomes a high-temperature heat source through high-efficiency heat collection and integration of the system, which is used for heating or supplying hot water, and the whole system has high heat collection efficiency.

Heat pump has four major advantages. The first is energy saving, which is conducive to the comprehensive utilization of energy. The second point is to promote environmental protection. The third point is the combination of cold and heat. The equipment application rate is high, saving investment. Fourth, because it is electricity. Drive, so it is more convenient to regulate, so the heat pump is everyone's concern.

Heat pump technology is an energy technology in the 21st century. It can improve the energy efficiency through the form of heat pump. The use of energy efficiency has two meanings. From an environmental point of view, it can reduce greenhouse gas emissions and reduce environmental pollution. The other factor is a technology to solve the problem of high-altitude power.

Are heat pump products a solar product?

In terms of working principle, it is not a traditional solar product. Heat pump products are quite different from conventional solar products. Conventional solar products use water as a medium. They must rely on direct sunlight or radiation to achieve heating effect. Products use refrigerant to absorb heat and solar radiation in the air. After the compressor is compressed and heated, it exchanges heat with water to achieve the heating effect, so the product has the same principle as the air conditioner.

What is the working principle of the heat pump product?

The refrigerant is used as a medium, and the refrigerant has a low vaporization temperature and can be vaporized at -40 ° C. Therefore, there is a temperature difference between the refrigerant and the outside temperature. The refrigerant absorbs the external temperature and then vaporizes, and is heated by the compressor to become a high temperature. After the high-pressure gas exchanges heat with the water through the heat exchanger, the pressure is released through the expansion valve, and returns to the low-temperature and low-pressure liquefaction state, and the water in the water tank is heated by the continuous circulation of the refrigerant and the exchange of heat with the water.

Does the heat pump product need electricity?

Must use electricity, the compressor uses electric energy to compress and heat, not directly heating, air source heat pump and fan, also need electricity, but less electricity.

What are the characteristics of heat pump products?

1. Not affected by the environment, available all year round;

2. The energy saving effect is outstanding and the investment recovery period is short;

3. Environmentally friendly products without any pollution;

4, long service life, low operating costs;

5, safe operation, no operation;

6, modular design, easy to install.

What are the advantages of heat pumps compared to conventional solar products?

1. Wide application range, the product temperature range is -10-40 °C, and it is used all the year round. It can be used normally without the bad weather such as overcast, rain, snow and winter night.

2, continuous heating, compared with the traditional solar water storage type, the heat pump products can be continuously heated, continuous hot water supply to meet user needs.

3. Low operating cost: Compared with conventional solar energy, when the sun is good in spring, summer and autumn, the running cost is higher than that of solar energy, but in rainy days and nights, the thermal efficiency is much higher than that of solar energy. On average, the annual energy consumption of conventional solar-assisted systems is much higher than the total energy consumption of the products throughout the year.

4, easy to install: air source heat pump covers a small space, the shape is similar to the air conditioner outdoor unit, can be directly connected to the insulated water tank or connected to the heating pipe network, suitable for high-rise buildings in large and medium-sized cities, for large central heating problems, products Is the best choice.

What are the advantages of heat pump products compared to boilers?

1. High thermal efficiency: The thermal efficiency of the product is above 300% on average, and the thermal efficiency of the boiler will not exceed 100%.

2, low operating costs: compared with fuel, gas boilers, the average annual energy savings of 70%, coupled with lower electricity prices and rising fuel prices, the advantages of low operating costs are increasingly prominent.

3. Environmental protection: The heat pump product does not have any combustion emissions. The refrigerant uses the environmentally friendly refrigerant R417A, which is zero-pollution to the ozone layer and is a good environmentally friendly product.

4, safe operation, no need to be on duty: compared with the fuel boiler, the operation is absolutely safe, and fully automatic control, no personnel on duty, can save personnel costs.

5, modular installation, easy to add equipment: the product uses multiple units in parallel installation mode, when the user's water consumption increases, you can add equipment at any time.

What are the disadvantages of heat pump products compared to boilers?

1. Slow heating rate: The heat pump product is based on refrigerant and uses compressor compression and heating method. Compared with the direct heating mode of the boiler, the speed is relatively slow.

2. One-time investment: Compared with fuel oil and gas boilers, when the water consumption is more than 10 tons, the one-time investment is greater than the boiler. The larger the water consumption, the greater the relative investment of the products.

3, heating water temperature is limited: heat pump water temperature is generally 60 ° C (water source heat pump up to 80 ° C), can not produce high temperature water or steam above 80 °C.

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