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Here is the content list:
What is the operation principle of ASHP?
How does ASHP work in extreme cold conditions?
What is the service life of ASHP?
Air at any temperature above absolute zero contains some energy. An air-source heat pump is a kind of all-in-one heat pump that transfers some of this energy as heat from one place to another, for example between the outside and inside of a building. This can provide space heating and hot water. A single system can be designed to transfer heat in either direction, to heat or cool the interior of the building in winter and summer respectively. For simplicity, the description below focuses on use for interior heating.
The technology is similar to a refrigerator or freezer or air conditioning unit: the different effect is due to the physical location of the different system components. Just as the pipes on the back of a refrigerator become warm as the interior cools, so an ASHP warms the inside of a building whilst cooling the outside air.
The main components of an air source heat pump are:
1. An outdoor heat exchanger coil, which transfer extracts heat from ambient air
2. An indoor heat exchanger coil, which transfers the heat into hot air ducts, an indoor heating system such as water-filled radiators or underfloor circuits, and a domestic hot water tank.
Air source heat pumps can provide fairly low-cost space heating. The high-efficiency heat pump can provide up to four times as much heat as an electric resistance heater using the same amount of electricity. The lifetime cost of an air source heat pump will be affected by the price of electricity compared to gas (where available). Burning gas or oil will emit carbon dioxide and also nitrogen dioxide, which can be harmful to health. An air-source heat pump issues no carbon dioxide, nitrogen oxide, or any other kind of gas. It uses a small amount of electricity to transfer a large amount of heat: the electricity may be from a renewable source, or it may be generated from power stations that burn fossil fuel.
An air-source heat pump designed specifically for very cold climates can extract useful heat from ambient air as cold −30 °C (−22 °F). Manufacturers include Mitsubishi and Fujitsu. One Mitsubishi model provides heat at −35 °C, but the coefficient of performance (COP) drops to 0.9, indicating that resistance heating would be more efficient at that temperature. At −30 °C, the COP is 1.1, according to the manufacturer's data (the manufacturer's marketing literature also claims a minimum COP of 1.4 and performance to −30 °C). Although air-source heat pumps are less efficient than well-installed ground source heat pumps in cold conditions, air-source heat pumps have lower initial costs and may be the most economic or practical choice.
A study by Natural Resources Canada found that cold climate air-source heat pumps (CC-ASHPs) work in Canadian winters, based on testing in Ottawa (Ontario) in late December 2012 to early January 2013 using a ducted CC-ASHP. (The report does not explicitly state whether backup heat sources should be considered for temperatures below −30 °C. The record low for Ottawa is −36 °C.) The CC-ASHP provided 60% energy savings compared to natural gas (in energy units). When considering energy efficiency in electricity generation, however, more energy would be used with the CC-ASHP, relative to natural gas heating, in provinces or territories (Alberta, Nova Scotia, and the Northwest Territories) where coal-fired generation was the predominant method of electricity generation. (The energy savings in Saskatchewan were marginal. Other provinces use primarily hydroelectric and/or nuclear generation.) Despite the significant energy savings relative to gas in provinces not relying primarily on coal, the higher cost of electricity relative to natural gas (using 2012 retail prices in Ottawa, Ontario) made natural gas the less expensive energy source. (The report did not calculate the cost of operation in the province of Quebec, which has lower electricity rates, nor did it show the impact of time of use electricity rates.) The study found that in Ottawa a CC-ASHP cost 124% more to operate than the natural gas system. However, in areas where natural gas is not available to homeowners, 59% of energy cost savings can be realized relative to heating with fuel oil. The report noted that about 1 million residences in Canada (8%) are still heated with fuel oil. The report shows 54% energy cost savings for CC-ASHPs relative to electric baseboard resistance heating. Based on these savings, the report showed a five-year payback for converting from either fuel oil or electric baseboard resistance heating to a CC-ASHP.
Air source heat pumps can last for over 20 years with low maintenance requirements. There are numerous heat pumps from the 1970s and 1980s in the United States that are still in service in 2012even in places where winters are extremely cold. Few moving parts reduce maintenance requirements. However, the outdoor heat exchanger and fan must be kept free from leaves and debris. Heat pumps have more moving parts than an equivalent electric resistance heater or fuel burning heater. Ground source heat pumps have fewer moving parts than air source heat pumps as they do not need fans or defrosting mechanisms and are located indoors. The ground array for a ground source installation should last for over 100 years.
Air source heat pump is our life simpler and more convenient, has become an indispensable electrical appliance in our life. Its widespread use has helped many people in extreme weather. It not only regulates temperature but also provides hot water, making it a better presence than air conditioning. If you are in all-in-one heat pump and air source heat pumps business, you can consider our cost-effective products.
Space heating heat pump water temperature output up to 55 ℃, adopt DC inverter technology with high efficiency, intelligent controller, full automatically operation. Space heating heat pump can be used for cooling or heating.
Here is the content list:
1. What are the advantages of space heating heat pumps?
(1) Low operating cost
(2) Energy-saving and environmental protection
(3) Beautiful and harmonious
2. What are the disadvantages of space heating heat pumps?
(1) Low operating cost
The space heating heat pump utilizes the relatively stable characteristics of the underground temperature throughout the year, and the COP value is as high as 4 or more. When the same cooling and heating effect is produced, the space heating heat pump saves 30%-40% of the electricity of the general central air conditioner.
(2) Energy saving and environmental protection
The indoor side of the space heating heat pump is transported by chilled water, reducing the refrigerant charge, thereby reducing air pollution; the outdoor side heat exchange environment is changed from the atmosphere to soil or water, thereby reducing atmospheric heat emission and reducing the heat island effect. The space heating heat pump consumes only a small amount of electric energy, and will not produce carbon dioxide and other environmentally polluting gases during operation, and will not affect the health of indoor personnel due to leakage.
(3) Beautiful and harmonious
The host of the space heating heat pump does not exchange heat with the atmosphere. It only needs to be placed in a well-ventilated place. It can be sheltered and designed in the basement and garage without affecting the overall decoration effect of the facade and courtyard.
The price of space heating heat pumps is directly related to the residential area. At present, the price of a household space heating heat pump system is more than 700 per square meter, which is relatively high in initial investment cost.
It is the responsibility of each manufacturer to produce space heating heat pumps that meet the standards, to ensure the healthy development of the space heating heat pumps market. MICOE conducts many tests on space heating heat pumps before they leave the factory, and the quality qualification rate is guaranteed. If you are in the space heating heat pumps business, you can consider our cost-effective products.
Micoe analyzed the water use situation of Tesla's Shanghai factory, combined with the local climate and light conditions, and proposed the most reasonable, energy-saving and stable hot water solution. After careful calculation and repeated simulation experiments for many times, it is undoubtedly the best choice to use solar energy and air energy complementary technology in the project.
At present, the solar thermal industry, with the joint efforts of countless people, has grown into the largest market in the world, and the annual promotion scale and area are very huge.
The air source heat pump is playing a more and more important part in the commercial and civil fields such as hot water and heating after the application and promotion of the clean heating policy in Northern China.
Tesla's hot water project has played an significant role in promoting complementary dual-energy solutions. At the same time, this project has given a good interpretation of Tesla's concept of green environmental protection.
Tesla's Shanghai factory hot water project has not only been listed in the Top Ten Glorious Hot Water Projects for Micoe’s 20th Anniversary, but also become a super engineering benchmark for cross-industry cooperation. In the field of clean energy hot water, Micoe has successfully cooperated with Tesla with its excellent brand concept and excellent solution ability.
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Nowadays, more and more communities choose space heating heat pumps for heating, and the government is also strongly supporting this policy. So, why choose a space heating heat pump?
Here is the content list:
Advantages of space heating heat pump
How to choose the type of space heating heat pump?
How to buy a space heating heat pump?
The energy efficiency ratio is high. One part of electricity supplies three parts of heat. The space heat pump is essentially a heat-lifting device that absorbs heat from the surrounding environment and transfers it to the object to be heated. At work, first, input 1 part of electric energy to drive the compressor to do work, and then absorb a large amount of heat energy from the outside environment temperature, and release heat in the condenser through the refrigerant circulation system. It is precisely because of the existence of the "law of conservation of energy" that the 1 share of electrical energy input to the compressor can always be converted into 1 share of heat energy, and the large amount of heat energy absorbed from the external environment becomes an additional harvest. In other words, the main force that really heats water is not the input of electrical energy, but the free "heat" in the air.
Electricity is not expensive, and ordinary households can afford it. The initial investment of space heating heat pump heating products is indeed much higher than that of electric heating, but the operating costs are also much lower, the comfort is better, and it is safe.
1. The model should be selected according to the larger one of the heating load in winter and the cooling load in summer.
2. When the unit is used as the auxiliary heat source of the solar hot water system at the same time, it should be determined according to the maximum specifications that meet the requirements of the three.
3. On the premise of meeting the above requirements, the equipment capacity should not be over-enlarged.
The purchase of space heating heat pumps can be selected from the following seven aspects:
1. Appearance inspection: The outer surface of the paint should be uniform, bright in color, without falling off, with no dents, severe scratches, or pressing marks, etc; The outer shell should be made of fluorine titanium plate.
2. Strictly prevent counterfeit and inferior products, it is best to buy directly from the manufacturer.
3. The accessories should be complete.
4. Inspection of the power plug: the wiring must be firm, and of course it is better if the line is thick and hard. If it is too small, it will heat up after power on for a while, and it may even cause a fire.
5. Power-on test and constant temperature performance check whether the indicator light is on, and whether the machine is humanized setting does not require people to normally open and normally close. Whether there is overheating protection function and whether the defrosting is good.
6. Noise: The smaller the noise of the heat pump water heater, the better.
7. If the space heating heat pump has the function of magnetization or ion activation, the effect will be better.
It is the responsibility of each manufacturer to produce an industrial heat pump that meets the standards, so as to ensure the safety of the use of heat pumps and the healthy development of the heat pump market. MICOE many tests on heat pumps before they leave the factory, and the quality qualification rate is guaranteed. If you are in the heat pump business, you can consider our cost-effective products.