US2013220901A1PendingUtilityA1

System for capturing, classifying and separating rainwater

Assignee: GARIOS WADIH ANTONIOPriority: Nov 4, 2010Filed: Nov 1, 2011Published: Aug 29, 2013
Est. expiryNov 4, 2030(~4.3 yrs left)· nominal 20-yr term from priority
G01N 21/59C02F 2209/42Y02A20/108E03B 3/02E03B 2001/047C02F 1/008C02F 2103/001C02F 2209/11E03B 1/041C02F 2303/04C02F 1/76C02F 2303/24C02F 1/004C02F 1/685C02F 2103/007
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Claims

Abstract

A system based on the elimination of debris, turbidity and undesired water collected from the rain, through a system having a group of parts for functioning and utilizing all the collected water in a efficient and effective way. The system initially possesses a debris separating and deviating filter ( 8 ), with the characteristics of its filters ( 10 ), ( 11 ) and ( 13 ), to adapt greatly to the momentary overflows of rain and to retrieve and eliminate undesirable matter from the piping. It also accomplishes the elimination of turbid water by reading of turbid water data, using a beam of light ( 19 ) and a light receptor ( 21 ). It has a self-calibrating routine in its appliances for precision in the readings. Besides eliminating the turbid water, it also measures the conductivity of the collected water by a sensor ( 17 ) to obtain the best quality of water. It has luminous and/or resonant signs that detect system crashes. The sensors and the valve ( 23 ) are managed by the command module ( 33 ) that collect water with reference of being of the most pure and clean quality, free from the various impurities aggregated to rainwater on its way to the exit ( 24 ). The undesired waters are ejected by the exit ( 30 ).

Claims

exact text as granted — not AI-modified
1 - A system for capturing, classifying and separating rainwater, comprising a group of parts that make a system where ( 3 ) a pipe through which the collected rainwater passes from catchment areas ( 4 ), enters the waters in the separating filter and deviator of debris ( 8 ), where the separation and classification of rainwater begins, and the calibrator ( 5 ) programs the filter's inclination ( 11 ) to the various rain flows. The filter ( 11 ) is fastened to the rod ( 9 ) and connected to the auto retractable filters ( 10 ) and ( 13 ). The trash ( 15 ) is disposed through the exit ( 14 ) out of the system. The water ( 6 ) is separated from the trash ( 15 ) and flows to the exit ( 7 ) following through the piping ( 16 ) towards the sensor ( 17 ) and sends signals to the command module ( 33 ) informing of the presence of water. It also measures the connectivity.
 To the exit ( 30 ) where it is eliminated into the sewer or to the exit ( 24 ) in direction of the chlorinator ( 26 ) going to the entry ( 27 ) that conduces the water to the cistern or reservoir ( 29 ), where the automatic ( 28 ) sends a signal to the command module ( 33 ) avoiding an overflow. The command module ( 33 ) also signals the stages in activity with leads and manages the emission of resounding signals in case of system crash. The battery ( 31 ) is used when there is a shortage of electrical power supply network ( 32 ). The sirene ( 35 ) emits a resonating signal in critical situations. Because it has a battery of its own, this signal is also emitted by the saved rain ( 34 ) when there is a total power shortage in the circuit.

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