TYPES OF SOLAR AIR CONDITIONING UNITS
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- Tamsin Lloyd
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2 TYPES OF SOLAR AIR CONDITIONING UNITS Split Wall Mounted Type BTU 1 (1.5 Hp) BTU 1.6 (2.0 Hp) BTU 2 (3.0 Hp) Floor Standing Type BTU 2 (3.0 Hp) BTU 3 (4.5 Hp) BTU 4 (6.0 Hp) Universal Ceiling Mounted Type BTU 2 (3.0 Hp) BTU 3 (4.5 Hp) BTU 4 (6.0 Hp) Cassette Type BTU 2(3.0 Hp) BTU 3 (4.5 Hp) BTU 4 (6.0 Hp)
3 Introduction: Our products are becoming very popular throughout the world today and Solar products will be in over 50 countries by the end of this year Our solar air conditioners are the most popular air conditioners in the world, being the only patented real thermal solar air conditioners today that actually save 30% to 40% and more on energy usage. Our solar air conditioner offers the best quality and performance in the world built with all inner and outer steel, structure and components. Operating flow and heat / cold processing control copper tubing helps convert and send heated GREEN gasses to the solar air conditioners Hitachi and Panasonic compressors. With our thermal solar processing helping heat the medium reducing the compressor workload, therefore saving energy usage and providing a comfortable atmosphere. Solar air conditioners offers more energy efficiency 365 days per year, the hotter it gets outside, the more energy efficient our solar air conditioners are on saving energy. Our Solar Air Conditioners process colder air 50% faster then any air conditioner in the world. Atlantis Solar provides a dual cold processing method which provides cold air immediately at start. Our Solar inside blower units offers a dual and triple evaporation processing sending much colder air to the inside of your home or business much faster then any Solar air-conditioning running Principle A year of use with our solar energy-solar airconditioning units, offering dual-energy, solar e as auxiliary power, according to non-physical principle of complementarily to the photoelectr effect. Combination of the traditional home air conditioning technology transfer, absorption an a combination of compression, providing environmentally friendly Energy-efficient refrig as refrigeration and heating for environmental protection and energy conservation purposes. Why solar power-saving air-conditioning First, it uses a majority of solar energy, Secon adopts to a highly efficient heat transfer system Solar collectors / heat absorbers collect a certa amount of solar energy for air conditioning to w as a energy supplement offering an effective distribution system and greatly reducing compr Energy loss; intelligent controlling of the solar conditioning system can automatically guarante solar collection as part of the normal energy su Secondly, the use of a thread, hydrophilic alum foil, for the heat transfer system optimization m reducing energy loss improving overall efficienc effectively guaranteed results. Therefore, solar conditioning is much more convenient than reg air-conditioning saving you allot of energy usag How heat provides energy and air conditio Operating at night and when cloudy Location Installation of Solar air-conditioners is the mos important step from us the manufacturer to ou user. The result of installation will decide overa
4 air conditioner in the world. Our Solar has recently made new updates to our solar air conditioners listed below. 1. New high quality silver plastic logo labels, very attractive for all products. 2. Add water one time per year during annual service % faster cooling capacity over all conventional air conditioners in the world. 4. Inside unit self cleaning vacuum, helping keep the filter clean and stop all bacteria's and dust from recirculation into the home or business. 5. VRV systems coming out in 90 days, making it easy to connect 3 inside units to one outside unit. 6. Operation at any outside temperature with out shut down. 7. The hotter it is outside the more energy efficient our Atlantis Solar air conditioners are. 8. Remote control holders. 9. Smart technology micro chip offering indicator led readings. POWERFUL DEHUMIDIFICATION In order to fit the wet season, specially designed dehumidification function can remove 1.5kg water per hour (with no temperature lowering basically). Thus averts the discomfort caused by cooling and dehumidifying simultaneously. performance, including life and use of the solar conditioner. Our Solar air conditioner units collects solar he energy by a solar collector. The solar air-condit also can operate with efficiency at night or on c days. Our solar air conditioner units use a stori energy box in the solar collector to help store s heat energy. Installation: Our Solar air conditioner units are similar traditional air-conditioners. Solar collector helps provide more efficie the solar air conditioner when placed in t sun. Shorter piping connected to the solar col from the outdoor and indoor unit, for bet cooling results. To be installed by a professional. Installed according to the requirements o installation manual. Install in a location for a nice appearance Intelligent defrosting, and cold Split Wall:SK-W Series
5 resistance technology In cold seasons or continuous air conditioning operation, the outdoor condenser forms a thick layer of cream on the condenser resulting in lower performance air-conditioning. A solarfunctional air-conditioning intelligent defrost solution resolving this problem, always giving you the best performance. GREEN ENVIRONMENTAL PROTECTION Our air-conditioner provide with three levels of protecting system, i.e. dust filtering net with inside vacuum, electrostatic fiber and active carbon absorbing layer. They can remove peculiar smell, disinfect air and filter harmful material. Thus keeps the air fresh, and avoids the air-conditioner disease. During appraising, it has been found that in the room after half an hour running, 80% dust had been reduced and 95% bacteria have been killed. Our inside fan blower unit offers a selfcleaning vacuum system that helps reduce dust and bacteria particles, immediately sending partials from the inside of your home or office to the outside. This provides a cleaner bacteria and dust free atmosphere during operation, giving you a much healthier lifestyle inside. AUTOMATICALLY CONTROL HORIZONTAL V In order to reach set temperature rapidly, whe AUTO mode is selected, the position of horizon vane is automatically set to correspond to the operation mode to perform effective operation. FLOOR STANDING SERIES MODEL NUMBER: SK-2F, SK-3F, SK-5F LONG DISTANCE AND WIDE-ANGLE AIRFLOW The grille of our cabinet air-conditioner adopts specially designed blades. Powerful airflow dist cool or heat air to each corner of the room in a time Solar air-conditioners are designed according to the Carnot Cycle theory, combined with solar and heat pump technology, a Saving Energy & Green Product. Our systems are Hybrid Solar Systems. Our solar airconditioners can produce cooling and heating all in one. Solar air conditioner systems will produce needed hot-water for other in home or business uses in the future, as it is a multifunction machine. COMPACT DESIGN With the same power consumption, our airconditioner outputs larger volume of cool/heat EFFICIENT AND QUIET Large-diameter turbofan and vortex duct are incorporated for powerful and quiet airflow. The design of scroll-compressor leads to lower nois higher efficiency. Solar air-conditioner collect solar heat energy
6 with its collector, the collected heat energy will be reasonably distributed in reducing energy usage in our solar air-conditioners. This provides lower power consumption and helps save cost. Superior frequency with inverter air conditioning technology in our indoor units using temperature to set it off, giving the end user continued daily energy savings. Providing energy from heat: Heat Transfer. The Never Ending Destiny Heat transfer, or heat exchange, is a process of (what some people nickname it as) "heat migration" from a point, to another point. Come again? From what point to what point? From a point of higher temperature to a point of lower temperature. Tell me about heat transfer from the beginning, please. What if, I start at energy? Energy, as defined by my Physics teacher, Mr Ismail, back in high school, is the ability to work. Work, in simple terms, is defined as force (F) applied to move any object, by a distance Hence, if the force required to move the object is larger, i.e. moving a train (due to its st laden weight), then the work done per distance moved is much larger than moving a ba
7 cotton. That was just an example. The indestructible nature of energy: As explained in the compression section, every atom has an internal energy. This is due to the continuous motion of electron/s orbiting the neutron/s and proton/s. Ele has its own mass to move, so force is required. Electron has its own distance to move. He energy is existent. As long as the basic of all building blocks, namely electron, proton, and neutron exist, en can neither be destroyed nor created. Therefore, energy can only be transformed from one state, to another: Consider a sample of gas, with a specified internal energy. Consider another sample of gas with lower internal energy. Now, due to the internal energy from the electrons, atoms or molecules will move in a sp random motion. Speed of which these particles (atoms or molecules) move, will depend the internal energy. The higher its internal energy, the higher the speed of these partic Back to our samples of gas. When these gases are brought into contact, the gas particles will start to collide with eac other. Gas particles with higher internal energy, will collide with gas particles with lower internal energy. Speed of these particles will be traded. The lower particles speed will gain its speed, and higher gas particles speed will loose its speed. Analogy It is analogous to what happens when a white ball in snooker game hits a pack of snooke balls. Initially, the white ball will have a very high speed. As it impacts the pack of balls ( are initially at a standstill), the white ball will lose its speed tremendously, and the rest of pack will gain some speed. This is an example of how energy is transferred from one state, to another.
8 So, how can you say that heat is a form of energy? A specific sample of gas, with temperature above 0 Kelvin, and a finite mass; has particles vibrating, rotating, or travelling at a high speed. In other words, these particles moving. Since these particles are in motion, the gas particles are doing work! Therefore, heat is form of energy. Change gas to liquid giving you cold : Manufacturers of air conditioners use refrigerants, since it has an attractive boiling tempe for heat exchange between air that we live in, and the refrigerant. But, our atmospheric condition will not allow refrigerant to be in liquid state. Hence, we n compress it enough, coupled with condensing it, to change the state from gas, to liquid. T energy from compression and condensation overcomes the internal energy of the refriger Hence the state is changed from gas to liquid through compression and condensation. This stage is coupled with compression, for two reasons, to change the refrigerant s state from high pressure gas to high pressure liquid to avoid having very large compressor to compress refrigerant beyond critical poin change gas to liquid without going through liquid-vapour phase. In other words, en air conditioners are designed properly Although compression alone may change the state of refrigerant from vapour to liquid, it is deemed unpractica air conditioners design. You ll only waste your electricity and you might not get cool air in the end. So, condensat required. Condensation happens mainly in a heat exchanger, thro heat exchange process. That heat exchanger is known a condenser.
9 Sneak peek into the basics: Every atom and molecule of matters has a specific internal energy, as explained in compr page. And due to this specific internal energy, different matter exists in different state (so liquid, or vapour) at a given pressure and temperature. Solids will have atoms or molecules packed together very closely; hence the movement o involves rotation about each atom or molecule s axis. Liquid however, will have a close formation of molecules or atoms. The movement is muc more flexible than solids, but still restricted to short distances. Liquid has higher molecule atomic energy compared to solid, but lower energy compared to vapour. Vapour has all the freedom in this world, to move in all direction possible, with large distances between each atoms or molecules, high speed and random in motion. It has th highest molecule or atomic energy between solid and liquid. Our interest is in vapour and liquid phases, and the phase in between. The phase in betw Keep reading. Condensation wishes to introduce itself: Condensation is defined as the state, when a vapour starts to change phase into liquid sta a result of temperature drop. It starts when a superheated vapour reaches its saturation point. We have to bear in mind that condensation does not occur at a singular temperature. It o at different ranges of temperature. Reason being, the pressure of the vapour itself. Compression page has explained that increasing the pressure will reduce the distance bet the vapour molecules. Thus, vapour molecules will have lower net energy. Decreasing the pressure will have a reverse effect, where the distance between the molec will increase, and net molecular energy will increase. So, if a gas or vapour has a higher net energy, more energy needs to be removed to r the distance between the molecules. Similarly, lower net energy of vapour requires less energy removal for molecules distan
10 close. What s with all the molecule distance and energy removal? As explained earlier, the molecule distance is a characteristic to different states of a matt Solid, liquid, or vapour. Energy can be in terms of work, or heat. And when condensation is in the picture, energy removal is in terms of heat. Hence, as the pressure of the vapour increases, the heat removal required is smaller to condense it. This means that condensation of the matter starts to happen at a higher saturation (or boiling) temperature. This is good, as any temperature lower than the satu temperature, means we will have a condensed liquid. The flip side occurs for low vapour pressure. Let us consider Refrigerant 12 as an example. Referring to Rogers and Mayhew s Thermodynamic and Transport Properties of Fluids : the saturation temperature at 1 bar is about -30 o C (-22 o F) whereas the saturation temperature at 9.6 bar is about 40 o C (104 o F) This means that we have to have ambient air at -30 o C (-22 o F) for condensation of the refrigerant to occur at ambient pressure. Well, if we have that kind of ambient temperature, we wouldn t need cooling anymore do we? You see, the ambient temperature for the compressed refrigerant does not have to be low for condensation to occur. In fact the saturation temperature is higher than most am temperatures during hot summer. Hence heat exchange occurs from the refrigerant, to ambient air. This is why we have to couple condensation with compression in air conditioner systems. Bring the pressure up, close the gap between the gases, and remove the heat from the refrigerant to close the gap even more liquid refrigerant we have! Short meeting with vapour and liquid, and the phase in between: This meeting occurs when heat is continually removed from it. If all of the matter is in vapour form, then we call it superheated vapour, as there is no
11 condensation. Once the temperature drops to saturation line, we will have a mix of vapour and liquid. T the phase in between. At this time, temperature will not drop. This is due energy consumption of the atoms or molecules to and change phase from vapour, to liquid. Temperature will not decrease until all vapour within an enclosed space, turn into liquid. Once in liquid form, temperature will start to decrease again, until it meets freezing point that s a different story. Condensation wishes to conclude with real life example: Order a glass of iced lemon tea Watch condensation of water vapour happening on the glass
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