The present invention relates to a portable air cooler for cooling air circulated in a designated area; and more particularly an environmentally-friendly portable air cooler which has greater cooling capacity and is capable of reducing waste heat being released into the ambient environment during its operation.
Air cooler has been widely used for cooling air in a designated area, especially by those living in uncomfortably hot and dry climates due to its affordability and lower power consumption. In a conventional air cooling system, water is used to wet the cooling pad so as to cool the hot dry air travels through the evaporative pad by evaporation. Apart from the surrounding air temperature and the relative humidity level which could affect the efficiency of the air cooler to generate cold air, it should be noted that the temperature of the cold air generated by the air cooler is also greatly affected by the temperature of the water used to wet the evaporative pad. Air cooler which uses water with lower temperature to wet the evaporative pad could generate colder air as compared to those which use water with higher temperature. Typically, user who tends to get colder air will need to manually add ice to the water contained in the tank of the air cooler by which this could create inconvenience to the users as ice will need to be added to the air cooler from time to time so as to retain the desirous cooling effect.
On the other side, although air conditioner could provide the desirous cooling effect, it is known to be not economical in terms of installation and operating costs. Further, usage of air conditioner could indirectly cause an increased in carbon dioxide emission from power plants due to higher power consumption. It is known that carbon dioxide is one of the most important causes of global warming and global climate change. Further, waste heat generated by air conditioner could raise the outdoor temperature, particularly in urban areas and contributing to a rise in global temperature. It should be noted that high outdoor temperature could eventually lead to increased air conditioning demand and consequently power consumption, resulting in a positive feedback loop.
In view of these and other shortcomings, it is desirous to provide a portable air cooler which is economical and has greater cooling capacity by which the air cooler is capable of generating colder air without the need for ice being manually added to the water tank of the air cooler. Further, it is another objective of the present invention to provide a portable air cooler which is capable of reducing waste heat being released into the ambient environment during its operation.
The portable air cooler according to the preferred embodiment of the present invention and its combination of elements or parts thereof will be described and/or exemplified in the detailed description.
The present invention relates generally to a portable air cooler for cooling air circulated in a designated area. According to the present invention, the air cooler comprises an air inlet, an air outlet, a refrigeration unit, a receptacle for containing water, a centrifugal fan and an evaporative pad.
In accordance with the preferred embodiment of the present invention, the portable air cooler is preferably having an upper compartment and a lower compartment. Preferably, the upper compartment and the lower compartment of the portable air cooler are separated from each other by a partition. By way of example but not limitation, the partition may be made of plastics, aluminium, steel or metal sheet or any other materials which deemed suitable.
In the preferred embodiment of the present invention, the refrigeration unit of the portable air cooler includes a cooling coil, a compressor, a heating coil and an expansion valve operatively interconnected with each other. It should be noted that the cooling coil of the refrigeration unit is configured to be placed in the receptacle of the portable air cooler so as to cool the water contained in the receptacle. Preferably, the cooled water contained in the receptacle is delivered to the evaporative pad by means of at least one conduit operatively connected to a water pump. It will be appreciated that the water pump of the portable air cooler is configured to supply and deliver the cooled water efficiently to the evaporative pad.
According to the preferred embodiment of the present invention, the evaporative pad is preferably mounted proximate the air inlet of the portable air cooler. It should be noted that the cooled water is preferably delivered to the top of the evaporative pad such that the cooled water flows down and wet the entire evaporative pad.
In the preferred embodiment of the present invention, the centrifugal fan is suitably positioned between the evaporative pad and the air outlet. It should be noted that the centrifugal fan is configured to draw ambient air from the air inlet of the portable air cooler through the wetted evaporative pad. It will be appreciated that the drawn air gets cooled after travels through the wetted evaporative and exits the air outlet so as to cool the designated area where the cooled air is directed.
In accordance with the preferred embodiment of the present invention, the portable air cooler is provided with at least one air duct so as to channel a part of the cooled air to cool the heating coil of the refrigeration unit so as to reduce waste heat generated by the heating coil of the refrigeration unit being released into the ambient environment.
The present invention consists of several novel features and a combination of parts hereinafter fully described and illustrated in the accompanying description and drawings, it being understood that various changes in the details may be made without departing from the scope of the invention or sacrificing any of the advantages of the present invention.
The present invention will be fully understood from the detailed description given herein below and the accompanying drawings which are given by way of illustration only, and thus are not limitative of the present invention, wherein:
The present invention relates to a portable air cooler for cooling air circulated in a designated area. More particularly, an environmentally-friendly portable air cooler which has greater cooling capacity and is capable of reducing waste heat being released into the ambient environment during its operation. Hereinafter, this specification will describe the present invention according to the preferred embodiments of the present invention. However, it is to be understood that limiting the description to the preferred embodiments of the invention is merely to facilitate discussion of the present invention and it is envisioned that those skilled in the art may devise various modifications and equivalents without departing from the scope of the appended claims.
The portable air cooler for cooling air circulated in a designated area according to the preferred embodiments of the present invention will now be described in accordance to the accompanying drawings
Referring to
According to the preferred embodiments of the present invention, the portable air cooler is preferably having an upper compartment 50 and a lower compartment 70 as illustrated in
In the preferred embodiment, the refrigeration unit 100 of the portable air cooler 1 includes a cooling coil 110, a compressor 130, a heating coil 150 and an expansion valve 170 operatively interconnected with each other and formed a closed circuit.
Preferably, the closed circuit is filled with refrigerant. In the preferred embodiment, the refrigeration unit 100 is sited in the upper compartment 50 of the portable air cooler 1.
In the preferred embodiments of the present invention, the cooling coil 110 of the refrigeration unit 100 is configured to be placed and submerged in water contained in the receptacle 200 of the portable air cooler 1 so as to cool the water in the receptacle 200. Preferably, the cooling coil 110 is made of copper tubing for efficient heat transfer by which heat from the water is extracted by the cooling coil 110 and thereby cools the water in the receptacle 200. In the preferred embodiments, the receptacle 200 is preferably positioned in the upper compartment 50 of the portable air cooler 1 and seated on the partition 90 of the portable air cooler 1. Preferably, the receptacle 200 is sited below the evaporative pad 400 as illustrated in
In accordance with the preferred embodiment of the present invention, the evaporative pad 400 is preferably mounted proximate the air inlet 500 of the portable air cooler 1 as illustrated in
According to the preferred embodiments of the present invention, the centrifugal fan 600 is preferably deposited at the central portion of the upper compartment 50 of the portable air cooler 1 and suitably positioned between the evaporative pad 400 and the air outlet 700 of the portable air cooler 1 as illustrated in
In the preferred embodiment of the present invention, the heating coil 150 of the refrigeration unit 100 is preferably extending within the upper compartment 50 of the portable air cooler 1 in a helical form prior entering the lower compartment 70 of the portable air cooler 1 such that the length of the heating coil 150 can be extended so as to increase heat transfer surface of the heating coil 150. It will be appreciated that such configuration could allow heat generated by the heating coil 150 be dissipated efficiently. According to the preferred embodiments, the heating coil 150 is preferably surrounded by a plurality of heat transfer fins 151 as illustrated in FIGS. 1a to 2b. It should be noted that the heat transfer fins 151 could facilitate and increase heat transfer rate so as to ensure that the heat generated by the heating coil 150 could be dissipated efficiently to the surrounding.
In order to reduce waste heat being generated by the heating coil 150, a part of the cooled air is channeled to the lower compartment 70 of the portable air cooler 1 through at least one air duct 30 for cooling the heating coil 150 as illustrated in
If desired, the compressor 130 of the refrigeration unit 100 of the portable air cooler 1 is further provided with a heat dissipation element 131. Preferably, the heat dissipation element 131 is suitably covered the top portion of the compressor 130 as illustrated in
In the preferred embodiment of the present invention, the portable air cooler 1 is also provided with a thermostat (not shown). It should be noted that the thermostat (not shown) is adapted to control the operation of the compressor of the refrigeration unit 100 so as to ensure the water in the receptacle could be maintained at the proper temperature.
It should be noted that configurations of various parts, elements and/or members used to carry out the above-mentioned embodiments are illustrative and exemplary only. One of ordinary skill in the art would recognize that those configurations, parts, elements and/or members used herein may be altered in a manner so as to obtain different effects or desired operating characteristics. Other combinations and/or modifications of the above-described configurations, arrangements, structures, applications, functions or components used in the practice of the present invention, in addition to those not specifically recited, may be varied or otherwise particularly adapted to specific environments and conditions, manufacturing specifications, design parameters or other operating requirements without departing from the general principles of the same.
The invention being thus described, it will be obvious that the same may be varied in many ways. Such variations are not to be regarded as a departure from the principle and scope of the invention, and all such modifications as would obvious to one skilled in the art intended to be included within the scope of following claims.
Number | Date | Country | Kind |
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PI 2017704572 | Nov 2017 | MY | national |
Filing Document | Filing Date | Country | Kind |
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PCT/MY2018/050076 | 11/15/2018 | WO | 00 |