IP Library › Granted Patent US 11,583,788
Granted Patent B1
US 11,583,788 · App. 17/746,246 · Granted Feb 21, 2023

Lightweight fibrous media (LFM) filter

Inventors: Theodore A. Kuepper (Oxnard, CA); Robert C. Lovo (Somis, CA)
B01D24/14B01D24/4663B01D24/4876B01D39/04C02F1/004C02F1/52C02F2303/16
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Quick Facts
Patent No.
US 11,583,788
App. No.
17/746,246
Granted
Feb 21, 2023
Kind
B1
Abstract

A filtration system using lightweight fibrous media (LFM) that are pre-compressed either 1) manually; or 2) in-situ using hydraulic flow; and where the LFM are forced to separate and relax for cleaning either: 1) manually, 2) in-situ in their filter housing, or 3) in an auto-clean system using separate devices in order to enact a particularly aggressive cleaning process. A plurality of lightweight fibrous media balls are pre-compressed and used to form a single mass that can filter water as the media are compressed by pre-compression before installation, or by water flow pushing on a pre-compression plate during filtration thereby forming a single mass providing multitudes of tortuous paths through which water can flow and the media can capture small particulate matter.

Claims (13)

1. A water filtration system comprising:

an elongate housing having an inlet at one end and an outlet at an opposing end;

a center cylinder extending axially within the elongate housing and spaced from an elongate interior surface of the elongate housing, defining an annular space therebetween, a first end of the center cylinder adjacent the inlet being imperforate with the opposing end of the center cylinder being perforated;

a hydraulic media plate substantially corresponding in shape to the cross-sectional area of the center cylinder and having a hole extending therethrough, is disposed within the center cylinder;

a tube having a first closed end extending through the hole and a second perforated end in fluid communication with the outlet; and

a plurality of lightweight fibrous media balls disposed within the center cylinder between the hydraulic media plate and the opposing end of the elongate housing, and surrounding the perforated end of the tube;

wherein a flow of water to be filtered enters the elongate housing through the inlet, urging the hydraulic media plate away from the inlet end of the elongate housing and compressing the lightweight fibrous media balls until the flow of water can flow through the perforated portion of the central cylinder and into the annular space, where it can then flow back through the perforated cylinder at points more distant from the inlet, through the compressed lightweight fibrous media balls, into the perforated tube and out through the elongate housing outlet.

2. The water filtration system of claim 1 , further comprising:

a backwash inlet extending through the opposing end of the elongate housing for the introduction of one or more backwash fluids into the center cylinder, the introduction of the one or more backwash fluids causes the hydraulic media plate to move towards the inlet and the lightweight fibrous media balls to expand, and captured contaminants flushed therefrom.

3. The water filtration system of claim 1 , wherein the lightweight fibrous media balls are made of a synthetic material.

4. The water filtration system of claim 3 , wherein the synthetic material includes polyethylene.

5. The water filtration system of claim 3 , wherein the synthetic material includes polypropylene.

6. The water filtration system of claim 3 , wherein the synthetic material has an affinity for oil.

Continuity (1)
Continuation In Part 17577558 · Jan 18, 2022
Cited By (2)
US 12,589,336 US 12,722,105