Air cooling device with enhanced circulation
The air cooling device addresses inefficiencies in existing cooling technologies by enabling multi-directional airflow and user control, providing effective temperature reduction and comfort through enhanced circulation and safety features.
Patent Information
- Application Number
- PCT/IN2025/050976
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2024-07-05
- Filing Date
- 2025-07-03
- Publication Date
- 2026-01-08
AI Technical Summary
Existing air cooling devices are inefficient in blowing cool air in multiple directions for even cooling of surroundings and lack user control over airflow speed and direction, failing to provide comfort to individuals in the surroundings.
An air cooling device with enhanced circulation that includes motorized fans, honeycomb cooling pads, collapsible louvers, and a control unit to adjust airflow direction and intensity, along with a water level indicator for safe operation.
The device effectively reduces surrounding temperature by blowing cooled air in multiple directions, allowing user customization of airflow, ensuring comfort and safety through efficient cooling and water management.
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Figure IN2025050976_08012026_PF_FP_ABST
Abstract
Description
FIELD OF THE INVENTION
[0001] The present invention relates to an air cooling device with enhanced circulation that is capable of absorbing heat energy from the surrounding air and blowing cooled air in multiple directions, thus aiding in reducing temperature of surroundings and providing comfort to individuals in the surrounding without causing any pollution and emission of greenhouse gases.BACKGROUND OF THE INVENTION
[0002] In hot and humid climates, temperatures reach levels considered high based on regional norms and seasonal variations. When exposed to hot and humid conditions, individuals may experience various physiological responses and health issues including heat stress, dehydration. Prolonged exposure to heat and humidity leads to heat exhaustion, characterized by symptoms such as heavy sweating, weakness, headache, nausea, and fainting. Overall, hot and humid climates pose significant health risks, particularly for vulnerable population such as elderly, children and pregnant women, and individuals with pre-existing medical conditions.
[0003] Traditionally, people used various methods to cope with heat, including using natural elements such as shade, water, and ventilation. Hand held fans of palm leaves or feathers were used to create airflow and provide cooling but are very labor-intensive Evaporative cooling was discovered and utilized, wet cloth or clay pots fdled with water were placed in front of windows or doorways to cool incoming air through evaporation. Electric fans became widely available, providing a more efficient and convenient alternative to hand-held fans. But electric fans have limited cooling effect and they do not actually lower the temperature, instead they create a wind chill effect that provides a sensation of cooling. Evaporative cooling technology continued to evolve, with the development of modem evaporative coolers or “swamp coolers”. Evaporative coolers became popular in arid regions with low humidity levels due to their energy efficiency and affordability compared to traditional air conditioning systems. However, these devices require a constant supply of water to function, which is a concern in regions with water scarcity or drought conditions.
[0004] US9199782B1 discloses a cooler with bladders filled with liquid attached to dispensers and placed in the interior of the cooler. The base of the cooler has recesses and channels to capture melted ice and provide cooling for the bladders. There is a front telescoping handle and arear telescoping handle with a pair of wheels for transport. A pair of dispensers at equidistance apart, each having a control mechanism and an outlet, is mateable with bladders with either one or two liquid conduits. Although, US’ 782 is capable of providing a cool breeze of air in the surroundings as well as to the individuals present in the surroundings. However, the above cited disclosure is inefficient in blowing air in different directions for even cooling of surroundings, thus failing in reducing temperature of surroundings and providing comfort to individuals present in the surroundings.
[0005] US5407218A discloses about a wheeled cooler is provided having an open top housing with a removable cover member forming a closed internal chamber for the storage of articles. At least two-wheel members are rotatably secured to opposing displaced sidewalls of the open top housing. The wheel members have a mechanism for removable capturing each of the wheel members individually within a respective transversely displaced sidewall. The wheel capturing mechanism includes a wheel base member which may be inserted in a tongue in groove connection to the sidewalls. In this manner there is provided a wheeled cooler which may easily have the wheel members removable from the housing or inserted within the housing for rotatable transport across a base surface. Though US’218 is capable of providing a cool breeze of air in the surroundings and facilitating in lowering the temperature of the surroundings along with providing a soothing and calming environment. However, the cited cooler lacks in blowing cool air in multiple directions as per the presence of users in the enclosure. Additionally, the cited disclosure is also inefficient in providing a mean to the individuals for regulating the airflow and intensity of breeze while the cooler is in operation in view of providing the user with a mean to manually adjust the intensity of air for providing comfort to the user.
[0006] Conventionally, many devices are available in the market that are capable of providing the users with a cool and chill breeze of air in the surroundings and provides a cool and soothing temperature level. However, these present devices are inefficient in blowing cool air in different directions for even cooling of surroundings, thus failing in reducing the temperature of surroundings and lacking in providing comfort to the individuals present in the surroundings.
[0007] In order to overcome the aforementioned drawbacks, there exists a need in the art to develop a device that needs to be capable of providing a means for blowing cool breeze of air in different directions for even cooling of surroundings, and requires to reduce the temperature of surroundings in view of providing comfort to individuals present in the surroundings. Additionally, the developed device also needs to be capable of allowing the user to adjust andmodulate the flow of air in the surroundings, thereby facilitating the user in precise and optimum adjustments as per their needs and preferences.OBJECTS OF THE INVENTION
[0008] The principal object of the present invention is to overcome the disadvantages of the prior art.
[0009] An object of the present invention is to develop a device that is capable of absorbing the heat energy from the surrounding air and blowing cooled air in multiple directions, thus aiding in reducing the temperature of surroundings and providing comfort to individuals present in the surrounding.
[0010] Another object of the present invention is to develop a device that is capable of allowing the user to customize the speed and intensity of the airflow according to preferences and provides efficient cooling, user control, and convenience, thereby ensuing suitability for various applications, including home cooling, industrial cooling and environmental comfort cooling.
[0011] Yet another object of the present invention is to develop a device that provides additional layer of safety to the users by ensuring that water levels are within safe limits and facilitates the user to manually check the water level, thereby ensuring optimal operation and preventing overflows.
[0012] The foregoing and other objects, features, and advantages of the present invention will become readily apparent upon further review of the following detailed description of the preferred embodiment as illustrated in the accompanying drawings.SUMMARY OF THE INVENTION
[0013] The present invention relates to an air cooling device with enhanced circulation that that is capable of absorbing the heat energy from the surrounding air and blowing cooled air in multiple directions, thereby aiding in reducing temperature of surroundings. Additionally, the proposed device also provides additional layer of safety to the users by ensuring that water levels are within safe limits and facilitates the user to manually check the water level, thereby ensuring optimal operation and preventing overflows.
[0014] According to an embodiment of the present invention, an air cooling device with enhanced circulation, comprises of a cuboidal hollow body positioned on a ground surface and installed with first and second set of opposite sides, a pair of primary honeycomb cooling pads installed with the first set of opposite sides and a pair of secondary honeycomb cooling pads installed with the second set of opposite sides that allows surrounding air to be drawn within the body, a set of grills are configured with the body for covering the primary and secondary cooling pads, a pair of motorized fans installed with the second set of opposite sides to withdrawn external air within the body, an electric pump installed with a water tank housed within the body and connected with each of the first set of opposite sides via a bifurcating pipe, plurality of collapsible louvers installed at the second set of sides via plurality of motorized hinges for providing to-and-fro motion to the collapsible louvers in view of blowing the air in different directions for even cooling of surroundings, a first circular knob installed on each of the second set of opposite sides of body for regulating speed of the fan, a second knob installed on one of the second set of opposite sides of the body to turn on / off the pump, a third circular knob installed on each of the second set of opposite sides of the body and electrically paired with the control unit to change tilt of louvers for changing direction of flow of air by fans, plurality of caster wheels installed underneath the body to maneuver the body on the ground surface, and a water level indicator crafted on the body for allowing the user to detect level of the water within the water tank.
[0015] While the invention has been described and shown with particular reference to the preferred embodiment, it will be apparent that variations might be possible that would fall within the scope of the present invention.BRIEF DESCRIPTION OF THE DRAWINGS
[0016] These and other features, aspects, and advantages of the present invention will become better understood with regard to the following description, appended claims, and accompanying drawings where:Figure 1 illustrates an isometric view of an air cooling device with enhanced circulation;Figure 2 illustrates an exploded view of the proposed device;Figure 3 illustrates an internal view of the proposed device;Figure 4 illustrates a front view of the proposed device;Figure 5 illustrates a side view of the proposed device; andFigure 6 illustrates a rear view of the proposed device.DETAILED DESCRIPTION OF THE INVENTION
[0017] The following description includes the preferred best mode of one embodiment of the present invention. It will be clear from this description of the invention that the invention is not limited to these illustrated embodiments but that the invention also includes a variety of modifications and embodiments thereto. Therefore, the present description should be seen as illustrative and not limiting. While the invention is susceptible to various modifications and alternative constructions, it should be understood, that there is no intention to limit the invention to the specific form disclosed, but, on the contrary, the invention is to cover all modifications, alternative constructions, and equivalents falling within the spirit and scope of the invention as defined in the claims.
[0018] In any embodiment described herein, the open-ended terms "comprising," "comprises,” and the like (which are synonymous with "including," "having” and "characterized by") may be replaced by the respective partially closed phrases "consisting essentially of," consists essentially of," and the like or the respective closed phrases "consisting of," "consists of, the like.
[0019] As used herein, the singular forms “a,” “an,” and “the” designate both the singular and the plural, unless expressly stated to designate the singular only.
[0020] The present invention relates to an air cooling device with enhanced circulation that is capable of allowing the user to customize the speed and intensity of the airflow according to preferences and provides efficient cooling, user control, and convenience, thereby ensuring suitability for various applications, including home cooling, industrial cooling and environmental comfort cooling.
[0021] Referring to Figure 1 and 2, an isometric view of an air cooling device with enhanced circulation and an exploded view of the proposed device are illustrated, respectively, comprising a cuboidal hollow body 101 positioned on a ground surface and installed with first and second set of opposite sides 102, 103, a pair of primary honeycomb cooling pads 104 installed with the first set of opposite sides 102, a pair of secondary honeycomb cooling pads 105 installed with the second set of opposite sides 103, a set of grills 201 configured with the body 101, a water tank 106 housed within the body 101 and connected with each of the first set of opposite sides 102 viaa bifurcating pipe, plurality of collapsible louvers 107 installed at the second set of sides 103, a first circular knob 108 installed on each of the second set of opposite sides 103 of body 101, second circular knob 109 installed on one of the second set of opposite sides 103 of the body 101, and a third circular knob 110 installed on each of the second set of opposite sides 103 of the body 101 are crafted on the body 101, plurality of caster wheels 111 installed underneath the body 101, and a water level indicator 112 crafted on the body 101.
[0022] The device disclosed herein comprises of a cuboidal hollow body 101 positioned on a ground surface and installed with first and second set of opposite sides 102, 103. The first set of opposite sides 102 is installed with a pair of primary honeycombs cooling pads 104 that allows surrounding air to be drawn within the body 101. Additionally, the second set of opposite sides 103 besides the fans 302, are arranged with a pair of primary and secondary honeycomb cooling pads 104, 105 for allowing air to be withdrawn within the body 101.
[0023] Moreover, the body 101 is configured with a set of grills 201 for covering the primary and secondary cooling pads 104, 105. The set of grills 201 ensuing the primary and secondary cooling pads 104, 105 encases with the body 101. Thus, the cooling pads 104, 105 stays intact during operations of the device in a secured manner.
[0024] The body 101 as disclosed herein is constructed from sturdy and robust material which includes, but not limited to Polypropylene (PP), Acrylonitrile Butadiene Styrene (ABS), or High Impact Polystyrene (HIPS). These materials offer strength and rigidity to the body 101 in view of providing resistant to mechanical stress and pressure.
[0025] The body 101 is made from engineered polymers which act as vibration-dampening materials in order to minimize noise and shaking of the body 101 consequently results in by providing noise-free operations, thereby enhancing longevity of the device. The body 101 is positioned on the ground surface, allowing easy access to surrounding air. Plurality of castor wheels 111 are installed underneath the body 101 for allowing the user to maneuver the body 101 on the ground surface as per requirement. The castor wheels 111 typically consist of a wheel mounted in a swivel or fixed housing. The wheels 111 are preferably made up of material but not limited to rubber, plastic or plastic depending upon the intended use and load-bearing capacity required.
[0026] When the force is applied by the user to move the body 101, the axle of the wheel rotates.This rotation coverts the linear force applied to the object into rotational motion, allowing the body 101 to move forward with less effort. The first set and the second set of opposite sides 102, 103 of the body 101 are further installed with a pair of primary and secondary honeycomb cooling pads 104, 105. These pads 104, 105 are made of a special material with a large surface area, resembling a honeycomb structure. The pads 104, 105 are designed to allow air to pass through them. The first set of opposite sides 102 mentioned herein are left and right side of the body 101, while the second set of opposite sides 103 are front and rear side of the body 101. The honeycomb structure of the pads 104, 105 have high water retention property which facilitates to deliver efficient cooling.
[0027] Refer to Figure 4, an internal view of the device is illustrated that comprises of a curvedshaped member 301 configured in the body 101, and a pair of motorized fans 302 installed with the second set of opposite sides 103.
[0028] When the surrounding air temperature is high, the natural convection process begins. The second set of opposite sides 103 of the cuboidal body 101 is installed with a pair of motorized fans 302. These fans 302 are typically axial fans 302, designed to efficiently move air in one direction. The fans 302 are strategically positioned to draw air from the surrounding into the cuboidal body 101. The cuboidal body 101 is equipped with an inbuilt control unit which is responsible for activating the motorized fans 302. An electric plug is electrically paired with the control unit via an electric wire for powering of the device.
[0029] The electric plug is designed to fit into the standard electrical outlets commonly found in homes and buildings. The plug typically consists of two or three pongs made of conductive metal, enclosed within a durable plastic or rubber casing. The prongs are designed to securely insert into the slots of the electrical outlet, establishing a connection for power transmission. The electric plug is attached to one end of an electric wire, which serves as the conduit for transmitting electrical power. The other end of the wire is connected to the body 101, allowing the plug to provide power to the device’s control unit. After the control unit receives power from the external power supply, the user accesses a first circular knob 108 crafted on each of the second set of opposite sides 103 of the body 101 (front and rear side) and electrically paired with the control unit for speed adjustments of the fans 302.
[0030] The first circular knob 108 is designed for ease of use, with ergonomic featured such as grippable surface and comprises clearly marked increments for speed adjustments. The firstcircular knob 108 comprises a spindle-like component that extends from the base of the first circular knob 108 and serves as a connection point for transmitting rotational motion. The first circular knob 108 is electrically paired with the control unit of the cooling device, this pairing allows the control unit to receive input from the first circular knob 108 regarding the desired fan speed setting.
[0031] When the first circular knob 108 is rotated by the user in clockwise direction, it rotates the spindle. The rotational movement of the spindle closes an electrical circuit imparting electricity flow to the fans 302 for regulating fan speed. Rotating the first circular knob 108 clockwise typically increases the fan speed, while rotating the first circular knob 108 in counter clockwise results in decreasing the fan speed. As the user adjusts the first circular knob 108 to change the fan speed setting, the control unit receives signals indicating the desired speed level.
[0032] A suction pressure is created upon of rotation of the fans 302, pulling air from the surrounding, into the cuboidal body 101 through the opens second set of opposite sides 103. The movement of the fans 302 helps to increase the airflow rate, facilitating the withdrawal of the external air into the cuboidal body 101. As the external air is withdrawn into the cuboidal body 101 due to suction pressure created as a result of rotation of the fans 302, the air passes through the primary and secondary honeycomb cooling pads 104, 105 installed on the first and second sets of opposite sides 102, 103. The two fans 302 are used to direct the air in two direction and sizes of the fans 302 ranges in between from 10” to 26” depending upon the requirement.
[0033] The user accesses a second circular knob 109 installed on one of the second set of opposite sides 103 of the body 101 and electrically connected with the control unit for activation / deactivation of an electric pump installed with a water tank 106 housed within the body 101 and connected with each of the first set of opposite sides 102 via a bifurcating pipe for pumping water towards the first set of opposite sides 102. Herein, the second circular knob 109 is installed on the front side of the body 101. Bifurcating pipes are connected to the outlet of the pump, leading to each of the first set of opposite sides 102 of the cuboidal body 101.
[0034] The second circular knob 109 works similar to the working of the first circular knob 108 and comprises clearly marked demarcations indicating ON / OFF for activation / deactivation of the pump. Upon rotation of the second circular knob 109 by the user to activate the pump, the control unit directs the current flow to the electric pump which begins to draw water from the water tank 106 filled with water. The pump pressurizes the water and pumps the water throughthe bifurcating pipes towards each of the first set of the opposite sides 102 of the cuboidal body 101. As the pressurized water flows through the bifurcating pipes, the water reaches the primary and secondary honeycomb cooling pads 104, 105 which efficiently absorbs the water due to their large surface area and porous structure. The flowing water moistens the cooling pads 104, 105, saturating them with water.
[0035] Hot air from the surrounding is drawn into the cuboidal body 101 through the cooling pads 104, 105. As the hot air passes through the primary and secondary honeycomb cooling pads 104, 105, the hot air comes into contact with the moistened pads 104, 105. The hot air causes the water on the pads 104, 105 to evaporate, absorbing the heat energy from the surrounding air in the process. This results in the cooled air exiting the cooling pads 104, 105 and entering the interior of the body 101 such that the withdrawn cooled air is blown out from the body 101 via the fans 302. Plurality of collapsible louvers 107 are installed at the second set of sides 103 via plurality of motorized hinges that are actuated by the control unit for providing to-and-fro motion to the collapsible louvers 107 in view of blowing the air in different directions for even cooling of surroundings.
[0036] Upon receiving signal from the control unit, the motorized hinges move the collapsible louvers 107 in a to-and-fro motion. This movement is synchronized and coordinated to ensure efficient airflow distribution in multiple directions, thus reducing temperature of surroundings and providing comfort to individuals in the surroundings. By adjusting the angle and position of the collapsible louvers 107, the control unit controls the direction of the airflow. For example, the collapsible louvers 107 may be directed upwards to distribute cooled air towards the ceiling or downward to provide direct cooling to individuals in the vicinity.
[0037] The motorized hinges typically involve the use of an electric motor to control the movement of the hinge and the connected component. The hinges provide the pivot point around which the movement occurs. The motor is the core component responsible for generating the rotational motion and converts the electrical energy into mechanical energy, producing the necessary torque that drives the hinges. As the motor rotates, the hinges orient the collapsible louvers 107 for providing to-and-fro motion to the collapsible louvers 107 in view of blowing the air in different directions for even cooling of surroundings.
[0038] Each of the second set of opposite sides of the body 101 is crafted with a third circular knob 110 for operating the louvers 107 in view of adjusting and redirecting the air flow towardsuser desired direction. The third circular knob 110 is also electrically connected with the control unit and works similar to the working of the first circular knob 108. The third circular knob 110 have ON / OFF indications for directing the louvers 107 movement via the hinges in an oscillating manner or aligning the louvers 107 in a fixed direction for regulating flow of cool air in user required direction. The user is required to access and rotate the third circular knob 110 for operation of the louvers 107 resulting in redirection of the cool air flow in accordance to user’s desired direction (as shown in figure 4 and 5). Herein, the side of the body 101 is identical to front side of the body 101 (as shown in figure 6).
[0039] The body 101 is partitioned in two sections by means of the curved-shaped member 301, such that each section of the partitioned incorporates one of the fans 302. The two created sections in the body 101 from the member 301 separating the operational environment of each fan, thereby eliminating disturbance of air flow during rotation of the fans 302 with each other.
[0040] The control unit processes these signals and translates them into commands for an electric induction motor coupled with each of the fans 302. The electric induction motor disclosed herein operates on the principle of electromagnetic induction. The induction motor mentioned herein above has two main parts i.e. a stator and a rotor. The stator, with its windings connected to a three-phase AC power supply, creates a rotating magnetic field (RMF). This RMF induces an electromotive force (EMF) in the rotor, generating currents in the rotor conductors. The interaction between the stator's RMF and the rotor's magnetic field produces torque, causing the rotor to spin. The rotor is further connected with the fans 302, thus the rotation of the rotor results in the rotation of the fans 302.
[0041] The control unit continuously monitors the position of the first circular knobs 108 and adjusts the speed of the fans 302 accordingly in real time by regulating amount of AC power supplied to the induction motor.
[0042] Further, a water level indicator 112 is crafted in the tank 106 for allowing the user to detect level of the water within the water tank 106. The water level indicator 112 consists of visual marking that represent different water levels within the tank 106. The water level indicator 112 visually represents the water level within the tank 106 using markings such as lines, dots or numerical marking. Each of the marking corresponds to a specific water level within the tank 106 such as “low”, “medium”, and “high”. To check the water level, the user simply looks at the water level indicator 112 on the body 101 of the device. Based on the position of the indicator112 relative to the markings, the user determines the current water level within the tank 106. The capacity of the water tank 106 nearly ranges in between 50 liters to 250 liters.
[0043] In an embodiment of the present invention, the device may be equipped with a touch enabled panel linked with the control unit to enable the user to select multiple options for operating the device such as regulation of fans 302 speed, orientation of the louvers 107, activation / deactivation of the device, timer for regulating operating timings of the device.
[0044] In another embodiment of the present invention, the device may be loT (Internet of Things) enabled, being operated by the user remotely to control various operations such as regulation of fans 302 speed, orientation of the louvers 107, activation / deactivation of the pump, through a computing unit. The control unit disclosed herein is wirelessly linked with the aforementioned computing unit by means of a communication module which includes, but not limited to Wi-Fi (Wireless Fidelity) module, Bluetooth module, GSM (Global System for Mobile Communication) module.
[0045] The present invention works best in the following manner, where the body 101 as disclosed in the invention is developed to be positioned on ground surface having first and second set of opposite sides 102, 103, wherein, the first set of opposite sides 102 is installed with a pair of primary and secondary honeycomb cooling pads 104, 105 that allows surrounding air to be drawn within the body 101. Upon receiving power from an external power supply via the electric plug, the control unit actuates the fans 302 for withdrawing air within the body 101 through the cooling pads 104, 105. Simultaneously, the control unit activates the electric pump for pumping water towards the first set of sides 102 via the bifurcating pipe, which in turn results in moistening of the pads 104, 105 such that the withdraw air is cooled and blown out from the body 101. As the hot air passes through the primary and secondary honeycomb cooling pads 104, 105, the air comes into contact with the moistened pads 104, 105 and cause the water on the pads to evaporate, absorbing the heat energy from the surrounding air in the process, resulting in the cooled air exiting the cooling pads 104, 105 and entering the interior of the body 101. The control unit then actuates the motorized hinges to move the collapsible louvers 107 in a to-and- fro motion and this movement is synchronized and coordinated to ensure efficient airflow distribution in multiple directions, thus reducing temperature of surroundings and providing comfort to individuals in the surroundings. Further, the water level indicator 112 crafted on the body 101 allows the user to detect level of the water within the water tank 106 and aids the user to keep a watch on the level of water left in the water tank 106.
[0046] Although the field of the invention has been described herein with limited reference to specific embodiments, this description is not meant to be construed in a limiting sense. Various modifications of the disclosed embodiments, as well as alternate embodiments of the invention, will become apparent to persons skilled in the art upon reference to the description of the invention.
Claims
We Claim:1) An air cooling device with enhanced circulation, comprising: i) a cuboidal hollow body 101 positioned on a ground surface, having a first and second set of opposite sides 102, 103, wherein said first set of opposite sides 102 is installed with a pair of primary honeycomb cooling pads 104 that allows surrounding air to be drawn within said body 101; ii) a pair of motorized fans 302 installed with said second set of opposite sides 103 that is activated by an inbuilt control unit upon receiving external power supply to rotate, wherein due to rotation of said fans 302, said external air is withdrawn within said body 101 through said cooling pads 104, 105 and blown out from said second set of opposite sides 103; iii) an electric pump installed within a water tank 106 housed within said body 101 and connected with each of said first set of opposite sides 102 via a bifurcating pipe, wherein upon activation by said control unit, said control unit actuates said pump for pumping said water towards said first set of opposite sides 102 which in turn results in moistening of said pads 104, 105 such that withdrawn air is cooled and blown out from said body 101 via said fans 302; and iv) plurality of collapsible louvers 107 installed at said second set of sides 103 via plurality of motorized hinges that are actuated by said control unit for providing to-and-fro motion to said collapsible louvers 107 in view of blowing said air in different directions for even cooling of surroundings, thus reducing temperature of said surroundings and providing comfort to individuals in said surroundings.2) The device as claimed in claim 1, wherein an electric plug is electrically paired with said control unit via an electric wire for powering of said device.3) The device as claimed in claim 1, wherein a first circular knob 108 is installed on each of said second set of opposite sides 103 of body 101 and electrically paired with said control unit that is accessed by a user for regulating speed of said fan, in accordance to which said control unit directs a DC (Direct Current) electric motor coupled with each of said fans 302 to regulates speed of said fans 302.4) The device as claimed in claim 1, wherein a second circular knob 109 is installed on one of said second set of opposite sides 103 of said body 101 and electrically paired with said control unit that allows said user to turn on / off said pump.5) The device as claimed in claim 1, wherein a third circular knob 110 is installed on each of second set of opposite sides 103 of said body 101 and electrically paired with said control unit that allows said user to change tilt of said louvers 107 for changing direction of flow of air by said fans 302.6) The device as claimed in claim 1, wherein plurality of caster wheels 111 is installed underneath said body 101 for allowing said user to maneuver said body 101 on said ground surface as per requirement.7) The device as claimed in claim 1, wherein said body 101 is partitioned via a curved-shaped member 301 in view of avoiding disturbance of air flow during rotation of said fans 302.8) The device as claimed in claim 1, wherein a pair of secondary honeycomb cooling pads 104,105 are also provided on said second set of opposite sides 103, besides said fans 302, for allowing air to be withdrawn within said body 101 due to suction pressure created as a result of rotation of said fans 302.9) The device as claimed in claim 1, wherein a set of grills 201 are configured with said body 101 for covering said primary and secondary cooling pads 104, 105.10) The device as claimed in claim 1, wherein a water level indicator 112 is crafted in said tank106 for allowing said user to detect level of said water within said water tank 106.
Citation Information
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