US2015373926A1PendingUtilityA1
System for optimally controlling sensory temperature based on humidity
Est. expiryJan 28, 2033(~6.5 yrs left)· nominal 20-yr term from priority
Inventors:Kyunghwa Park
A01G 9/26A01G 9/242Y02A40/25G05D 23/19F24F 11/30F24F 2110/10F24F 2110/20G05D 27/02G05D 22/02G05D 23/1919G05D 23/1902
35
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Claims
Abstract
The present invention can provide an optimum sensory temperature and can increase productivity by a system having a variable fan provided in a vinyl greenhouse, receiving optimum temperature (A) and humidity (B), detecting internal temperature (A′) and humidity (B′), calculating temperature (A″) according to the humidity, and providing the temperature (A″) suitable for the humidity (B′) detected through an operational control of the variable fan.
Claims
exact text as granted — not AI-modified1 . A system for controlling temperature and humidity in the inside of a vinyl house, a greenhouse and a stable, which is formed of a heating apparatus, an air blowing apparatus, a humidifying apparatus or a dehumidifying apparatus, comprising:
a thermometer and a hydrometer for measuring internal temperature and humidity; an apparatus for adjusting temperature; and an apparatus for adjusting humidity, wherein a variable fan formed of a motor and a fan are provided multiple in number, the variable fans being installed multiple in number on the top of the vinyl house or the stable, thus receiving the optimum temperature (A) and the optimum humidity (B) based on the applied plants or the livestock and receiving an applicable temperature and humidity range of a precise control, so a precise control can be performed by a control unit which receives a humidity unit (Z) which is a criteria for changing temperature, and a humidity unit-compared sensible temperature change value (C), and the applicable temperature and humidity range of a precise control are obtained using the apparatus for adjusting temperature and the apparatus for adjusting humidity, the currently detected temperature (A′) and the detected humidity (B′) are detected, and if the detected humidity (B′) is equal to or higher than the optimum humidity (B), an appropriate temperature (A″) is [A−{B′−B)/Z×C}], and if the detected humidity (B′) is lower than the optimum humidity (B), the appropriate temperature (A″) is [A+{B−B′)/Z×C}], and if the detected temperature (A′) is equal to or lower than the appropriate temperature (A″), the variable fan stops, thus increasing the temperatures in the inside of the vinyl house, the greenhouse and the stable, and if the detected temperature (A′) is higher than the appropriate temperature (A″), the variable fan operates, and external air is inputted, thus lowering the internal temperature in the inside of the vinyl house, the greenhouse and the stable, so such a system can provide a humidity-considered sensible temperature to the plants or the livestock.
2 . The system of claim 1 , wherein the variable fan can rotate in the normal direction or the reverse direction, and the rotation speed of the fan can be adjustable, and the control unit receives a reverse rotation driving temperature, and if the temperature is higher than the reverse rotation driving temperature, the air staying in the upper side is discharged to the outside, and if the detected temperature (A′) is equal to or lower than the appropriate temperature (A″), the variable fan stops or operates at a low output speed for at least ventilation, thus increasing the temperature in the inside of the stable, and if the detected temperature (A′) is higher than the appropriate temperature (A″), the higher the difference between the detected temperature (A′) and the appropriate temperature (A″), the variable fan can operate with higher output, thus quickly lowering the internal temperature in the inside of the vinyl house, the greenhouse and the stable.
3 . The system of claim 1 , wherein the variable fan is formed of a tee pipe, a fan, a shielding unit and an opening and closing plate, wherein the tee pipe is formed in a tubular T-shaped structure wherein a straight line-shaped outlet and an inlet which is vertical with respect to the outlet are formed integral, and external air is inputted through an entrance portion by the operation of a motor, and a shielding unit with a wider area than the inlet is provided at the top of the entrance portion of the tee pipe, thus preventing the inputs of water or impurities into the inside of a multi-plate, and the opening and closing plate has the shape same as the cross section of the outlet at both ends of the outlet of the tee pipe, thus opening and closing each outlet, and the opening and closing plate is controlled by the control unit to open the outlet when the fan operates and to block the outlet when the fan does not operate, and a tubular air supply passage unit having a plurality of through outlet holes is provided at the outlet, thus easily inputting external air into the inside with the aid of the operation of the fan.
4 . The system of claim 3 , wherein the control unit inputs, based on the growth period and cycle of the plants or livestock and changes in days and nights, changes and growth of the season, the optimum temperature (A), the optimum humidity (B), the applicable temperature and humidity range of a precise control, the humidity unit (Z), the humidity unit-compared sensible temperature change value (C) and the reverse rotation driving temperature, thus providing the optimum conditions without an additional operation until plants or livestock grow and are sold.
5 . The system of claim 2 , wherein the variable fan is formed of a tee pipe, a fan, a shielding unit and an opening and closing plate, wherein the tee pipe is formed in a tubular T-shaped structure wherein a straight line-shaped outlet and an inlet which is vertical with respect to the outlet are formed integral, and external air is inputted through an entrance portion by the operation of a motor, and a shielding unit with a wider area than the inlet is provided at the top of the entrance portion of the tee pipe, thus preventing the inputs of water or impurities into the inside of a multi-plate, and the opening and closing plate has the shape same as the cross section of the outlet at both ends of the outlet of the tee pipe, thus opening and closing each outlet, and the opening and closing plate is controlled by the control unit to open the outlet when the fan operates and to block the outlet when the fan does not operate, and a tubular air supply passage unit having a plurality of through outlet holes is provided at the outlet, thus easily inputting external air into the inside with the aid of the operation of the fan.Join the waitlist — get patent alerts
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