Friday, October 11, 2013

Refrigeration and Air Conditioning



REFRIGERATION AND AIR CONDITIONING
Contents:
Refrigeration: Definition of refrigerator, VCRS, Domestic refrigerator.
Air Conditioning: Window air conditioner, Split air conditioner.


1. Refrigeration:
1.1. Introduction:
            Refrigeration may be defined as the process of achieving and maintaining a temperature below that of surroundings.

The aim of the refrigeration is to cool some product or space to the required temperature. One of the most applications of refrigeration is preservation of perishable food products by storing them at low temperature. Refrigeration systems are also used extensively for providing thermal comfort to human being by means of air conditioning. Air conditioning refers to the treatment of air so as to simultaneously control its temperature, moisture, cleanliness, odour and circulation as required by occupants, a process or products in the space.

1.2. Units of Refrigeration- Tons of Refrigeration
            The rating of the refrigerating machine is given by a standard unit of refrigeration called ton of refrigeration (TR)
            One tone of refrigeration means capacity to freeze 1 ton of water from and at 00C in 24 hours
                                    1 TR= 211 kJ/min

1.3. Vapour Compression Refrigeration system:
            Figure 1 shows basic components of a vapour compression refrigeration system.
As shown in the figure the basic system consists of evaporator, compressor, condenser and expansion valve. The refrigeration effect is obtained in the cold region as heat is extracted by the vaporisation of refrigerant in the evaporator.
The refrigerant vapour from the evaporator is compressed in the compressor to a high pressure at which its saturation temperature is greater than the ambient or any other heat sink.
Hence when the high pressure high temperature flows through condenser, condensation of the vapour into liquid takes place by heat rejection to the heat sink.
To complete the cycle the high pressure liquid is made to flow through an expansion valve. In the expansion valve the pressure and temperature of the refrigerant decreases.
This low pressure and low temperature refrigerant vapour evaporates in the evaporator taking heat from the cold region.
It should be observed that the system operates on closed cycle. The system requires input in the form of mechanical work. It extracts heat from a cold space and rejects heat to a high temperature sink.

1.4. Domestic Refrigerators:
            Refrigerators, these days, are becoming the common item for house hold use, vendor’s shop, hotels, motels, offices, laboratories, hospitals, chemists and druggist’s shops, studios etc. They are manufactured in different size to meet the needs of various groups of people. They are usually rated with internal gross volume and the freezer volume. The freezer space is meant to preserve perishable products at a temperature much below 0°C such as fish, meat, chicken etc. and to produce ice and ice-cream as well. The refrigerators in India are available in different sizes of various makes, i.e., 90, 100, 140, 160, 200, 250, 380 litres of gross volume. The freezers are usually provided at top portion of the refrigerator space occupying around one-tenth to one-third of the refrigerator volume. In some refrigerators, freezers are provided at the bottom.
A domestic refrigerator consists of the following two main parts:
1. The refrigeration system.
2. The insulated cabinet.
Figure shows a flow diagram of a typical refrigeration system used in a domestic refrigerator.

Domestic Refrigerator

A simple domestic refrigerator consists of a hermetic compressor placed in the cabinet base.
The condenser is installed at the back and the evaporator is placed inside the cabinet at the top.
The working of the refrigerator is as follows:
·      The low pressure and low temperature refrigerant vapour (usually R12) is drawn through the suction line to the compressor. The accumulator provided between the suction line and the evaporator collects liquid refrigerant coming out of the evaporator due to incomplete evaporation, if any, prevents it from entering the compressor. The compressor then compresses the refrigerant vapour to a high pressure and high temperature. The compressed vapour flows through the discharge line into condenser (vertical natural draft, wire-tube type).
·      In the condenser the vapour refrigerant at high pressure and at high temperature is condensed to the liquid refrigerant at high pressure and low temperature.
·      The high pressure liquid refrigerant then flows through the filter and then enters the capillary tube (expansion device). The capillary tube is attached to the suction line as shown in Figure. The warm refrigerant passing through the capillary tube gives some of its heat to cold suction line vapour. This increases the heat absorbing quality of the liquid refrigerant slightly and increases the superheat of vapour entering the compressor. The capillary tube expands the liquid refrigerant at high pressure to the liquid refrigerant at low pressure so that a measured quantity of liquid refrigerant is passed into the evaporator.
·      In the evaporator the liquid refrigerant gets evaporated by absorbing heat from the container/articles placed in the evaporative chamber and is sucked back into the compressor and the cycle is repeated.


2. Air Conditioning
            Air conditioning is the process of improving the properties of air such as temperature and humidity human comfort. More generally, air conditioning can refer to any form of technological cooling, heating, ventilation, or disinfection that modifies the condition of air.

2.1. Types of Air Conditioning
            Two types of air conditioning systems are discussed.
            a) Window air conditioner
            b) Split air conditioner

2.2. Window Air Conditioner
            It is the most commonly used air conditioner for single rooms. In this air conditioner all the components, namely the compressor, condenser, expansion valve or coil, evaporator and cooling coil are enclosed in a single box. This unit is fitted in a slot made in the wall of the room, or often a window sill.
Windows air conditioners are one of the most widely used types of air conditioners because they are the simplest form of the air conditioning systems. Window air conditioner comprises of the rigid base on which all the parts of the window air conditioner are assembled. The base is assembled inside the casing which is fitted into the wall or the window of the room in which the air conditioner is fitted. The whole assembly of the window air conditioner can be divided into two compartments: the room side, which is also the cooling side and the outdoor side from where the heat absorbed by the room air is liberated to the atmosphere. The room side and outdoor side are separated from each other by an insulated partition enclosed inside the window air conditioner assembly (refer fig below).
In the front of the window air conditioner on the room side there is beautifully decorated front panel on which the supply and return air grills are fitted (the whole front panel itself is commonly called as front grill). The louvers fitted in the supply air grills are adjustable so as to supply the air in desired direction. There is also one opening in the grill that allows access to the control panel or operating panel in front of the window air conditioner.
Window Air Conditioning System

Parts of Window air conditioning system
1) Blower: This is the small blower that is fitted behind the evaporator or cooling coil inside the assembly of the window air conditioner system. The blower sucks the air from the room which first passes over the air filter and gets filtered. The air then passes over the cooling coil and gets chilled. The blower then blows this filtered and chilled air, which passes through the supply air compartment inside the window air conditioner assembly. This air is then delivered into the room from the supply air grill of the front panel.

2) Propeller fan or the condenser fan: The condenser fan is the forced draft type of propeller fan that sucks the atmospheric air and blows it over the condenser. The hot refrigerant inside the condenser gives up the heat to the atmospheric air and its temperature reduces.

3) Fan motor: The motor inside the window air conditioner assembly is located between the condenser and the evaporator coil. It has double shaft on one side of which the blower is fitted and on the other side the condenser fan is fitted. This makes the whole assembly of the blower, the condenser fan and the motor highly compact.

Limitations of Window Air Conditioner
            1. It has no control over humidity though it carries out dehumidification.
            2. Most of the window air conditioners do not provide heating for winter.
            3. No provision for humidification is possible in window air conditioner.



2.3. Split Air Conditioning System
The split air conditioner comprises of two parts: the outdoor unit and the indoor unit. The outdoor unit, fitted outside the room, houses components like the compressor, condenser and expansion valve. The indoor unit comprises the evaporator or cooling coil and the cooling fan. For this unit you don’t have to make any slot in the wall of the room. Further, the present day split units have aesthetic looks and add to the beauty of the room. The split air conditioner can be used to cool one or two rooms.
Split Air Conditioner

Parts of Split Air Conditioner
1) Evaporator Coil or the Cooling Coil:
The cooling coil is a copper coil made of number turns of the copper tubing with one or more rows depending on the capacity of the air conditioning system. The cooling coil is covered with the aluminium fins so that the maximum amount of heat can be transferred from the coil to the air inside the room. The refrigerant from the tubing at very low temperature and very low pressure enters the cooling coil. The blower absorbs the hot room air or the atmospheric air and in doing so the air passes over the cooling coil which leads to the cooling of the air. This air is then blown to the room where the cooling effect has to be produced. The air, after producing the cooling effect is again sucked by the blower and the process of cooling the room continues.
After absorbing the heat from the room air, the temperature of the refrigerant inside the cooling coil becomes high and it flows back through the return copper tubing to the compressor inside the outdoor unit. The refrigerant tubing supplying the refrigerant from the outdoor unit to the indoor unit and that supplying the refrigerant from indoor unit to the outdoor unit are both covered with the insulation tape.
2) Air Filter:
The air filter is very important part of the indoor unit. It removes all the dirt particles from the room air and helps supplying clean air to the room. The air filter in the wall mounted type of the indoor unit is placed just before the cooling coil. When the blower sucks the hot room air, it is first passed through the air filter and then though the cooling coil. Thus the clean air at low temperature is supplied into the room by the blower.
3) Cooling Fan or Blower:
Inside the indoor unit there is also a long blower that sucks the room air or the atmospheric air. It is an induced type of blower and while is sucks the room air it is passed over the cooling coil and the filter due to which the temperature of the air reduces and all the dirt from it is removed. The blower sucks the hot and unclean air from the room and supplies cool and clean air back. The shaft of the blower rotates inside the bushes and it is connected to a small multiple speed motor, thus the speed of the blower can be changed. When the fan speed is changed with the remote it is the speed of the blower that changes.
4) Drain Pipe:
Due to the low temperature refrigerant inside the cooling coil, its temperature is very low, usually much below the dew point temperature of the room air. When the room air is passed over the cooling due the suction force of the blower, the temperature of the air becomes very low and reaches levels below its dew point temperature. Due to this the water vapor present in the air gets condensed and dew or water drops are formed on the surface of the cooling coil. These water drops fall off the cooling coil and are collected in a small space inside the indoor unit. To remove the water from this space the drain pipe is connected from this space extending to the some external place outside the room where water can be disposed off. Thus the drain pipe helps removing dew water collected inside the indoor unit. To remove the water efficiently the indoor unit has to be a tilted by a very small angle of about 2 to 3 degrees so that the water can be collected in the space easily and drained out. If this angle is in opposite direction, all the water will get drained inside the room. Also, the if the tilt angle is too high, the indoor unit will shabby inside the room.
5) Louvers or Fins:
The cool air supplied by the blower is passed into the room through louvers. The louvers help changing the angle or direction in which the air needs to be supplied into the room as per the requirements. With louvers one easily change the direction in which the maximum amount of the cooled air has to be passed.
There are two types of louvers: horizontal and vertical. The horizontal louvers are connected to a small motor and there position can set by the remote control. Once can set a fixed position for the horizontal louvers so that chilled air is passed in a particular direction only or one can keep it in rotation mode so that the fresh air is supplied throughout the room. The vertical louvers are operated manually and one can easily change their position as per the requirements. The horizontal louvers control flow of air in upper and downward directions of the room, while vertical louvers control movement of air in left and right directions.

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