Although most people are familiar with the idea of a spray, it is perhaps less well understood exactly what a spray is. The definition of a spray is a collection of droplets dispersed in a gas. When someone sprays, for example, an aerosol can of deodorant, liquid stored inside the can is scattered as a cloud of fine drops in the air. It can be seen how this fits together with the definition of a spray.
Fleshing out the definition, the liquid in the illustration is of course the deodorant product. Once dispensed, the gas it is distributed within is of course the air. There are also instances where a spray is used in a medium other than air, such as where particular fluids can be sprayed into the fumes of power plants to make them less damaging to the environment.
Producing a spray can be referred to as atomization, and although this seems to suggest the liquid is divided into single atoms, this is not the case. Instead, a cloud of tiny drops of fluid is produced. The reasons for turning fluid into a spray are better appreciated by observing some situations where sprays are utilized. As the uses for spraying are so numerous, a few key examples will be selected.
Sprays are used extensively by companies producing foods and drinks. Spray washers are used to clean fruit and vegetables, while many flavorings and additives are sprayed onto foods. Sprays are very controllable, which helps manufacturers to ensure the correct amount of ingredient is added, for example a little too much spice will make food inedible for some people, so reasonable precision is required. Another advantage of sprays is that they can help ensure a uniform distribution of ingredient is applied over a food product.
Spray drying is another important process in the manufacturing of edible products. Liquid foods and drinks are dried by spraying them into hot air, which evaporates the moisture and leaves a powder. This procedure is used to create additives like colorings and spices, as well as more common staples such as instant coffee or powdered milk.
While spray drying is perhaps not familiar to the lay person, spray painting is far more widely known. As well as the mundane spray paint can known to all, there are other more advanced forms of spray painting. An interesting variation is electrostatic spray painting, where the paint spray is given an electric charge, and the item to be painted is given an opposite charge so that it will attract the paint. This has clear advantages over brush painting, where it can be very hard to paint into awkward areas.
Arguably one of the most significant of all uses of sprays is the way they are utilized in engines. In many engines, the fuel is turned into a spray directly before it is ignited, creating tiny, easily ignited drops of fuel mixed evenly with air, a very desirable combination. This principle is widely applied in jet, diesel, rocket and petrol engines, as well as in steam boilers.
As can be seen, the familiar but poorly understood concept of the spray touches our lives in numerous and powerful ways, whether that is in the power stations that heat our homes, the food we eat, common products like deodorants and spray paint, or the vehicles that make our world run.
Fleshing out the definition, the liquid in the illustration is of course the deodorant product. Once dispensed, the gas it is distributed within is of course the air. There are also instances where a spray is used in a medium other than air, such as where particular fluids can be sprayed into the fumes of power plants to make them less damaging to the environment.
Producing a spray can be referred to as atomization, and although this seems to suggest the liquid is divided into single atoms, this is not the case. Instead, a cloud of tiny drops of fluid is produced. The reasons for turning fluid into a spray are better appreciated by observing some situations where sprays are utilized. As the uses for spraying are so numerous, a few key examples will be selected.
Sprays are used extensively by companies producing foods and drinks. Spray washers are used to clean fruit and vegetables, while many flavorings and additives are sprayed onto foods. Sprays are very controllable, which helps manufacturers to ensure the correct amount of ingredient is added, for example a little too much spice will make food inedible for some people, so reasonable precision is required. Another advantage of sprays is that they can help ensure a uniform distribution of ingredient is applied over a food product.
Spray drying is another important process in the manufacturing of edible products. Liquid foods and drinks are dried by spraying them into hot air, which evaporates the moisture and leaves a powder. This procedure is used to create additives like colorings and spices, as well as more common staples such as instant coffee or powdered milk.
While spray drying is perhaps not familiar to the lay person, spray painting is far more widely known. As well as the mundane spray paint can known to all, there are other more advanced forms of spray painting. An interesting variation is electrostatic spray painting, where the paint spray is given an electric charge, and the item to be painted is given an opposite charge so that it will attract the paint. This has clear advantages over brush painting, where it can be very hard to paint into awkward areas.
Arguably one of the most significant of all uses of sprays is the way they are utilized in engines. In many engines, the fuel is turned into a spray directly before it is ignited, creating tiny, easily ignited drops of fuel mixed evenly with air, a very desirable combination. This principle is widely applied in jet, diesel, rocket and petrol engines, as well as in steam boilers.
As can be seen, the familiar but poorly understood concept of the spray touches our lives in numerous and powerful ways, whether that is in the power stations that heat our homes, the food we eat, common products like deodorants and spray paint, or the vehicles that make our world run.
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