IP Library Granted Patent US 10,286,992
Granted Patent B2
US 10,286,992 · App. 13/884,383 · Granted May 14, 2019

Fluid treatment system

Inventors: Matthew DaCosta (London, CA); Jim Fraser (St. Thomas, CA); Glen E. Latimer (Chagrin Falls, OH)
Assignee: TROJAN TECHNOLOGIES
B63J4/002C02F1/004C02F1/325C02F2103/008C02F2201/3227C02F2301/043C02F2303/16Y10T29/49826
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Quick Facts
Patent No.
US 10,286,992
App. No.
13/884,383
Granted
May 14, 2019
Kind
B2
Abstract

There is described a fluid treatment system that is particularly well suited for treating ballast water on a shipping vessel. The present fluid treatment system is characterized by having two general modes of operation. A so-called ballasting mode and a so-called deballasting mode. In the ballasting mode, water is pumped from the sea or other body of water in which the shipping vessel is located to a ballast fluid inlet in the present fluid treatment system. Thereafter, it passes through the filter separation and radiation treatment sections in the fluid treatment zone of the fluid treatment system. Next, the fluid exits the fluid outlet of the fluid treatment system and it is pumped to one or more ballast tanks that are located on the shipping vessel. In the deballasting mode, water contained in the ballast tank(s) is pumped to a deballasting fluid inlet of the fluid treatment system after which it is treated in the radiation section only—i.e., in the deballasting mode, water substantially bypasses the fluid separation section of the fluid treatment system. Next, the treated fluid exits the fluid outlet of the fluid treatment system and is discharged overboard the shipping vessel. A valve system is used to switch between ballasting mode and deballasting mode.

Claims (41)

1. A fluid treatment system comprising:

a housing;

a first fluid inlet in the housing;

a second fluid inlet in the housing;

a fluid outlet in the housing;

a fluid treatment zone disposed in the housing, the fluid treatment zone comprising a fluid separation section and a fluid radiation section in fluid communication with one another and in fluid communication with the first fluid inlet, the second fluid inlet and the fluid outlet, at least a portion of the fluid separation section being disposed within at least a portion of the fluid radiation section; and

a programmed system control operating a valve system in each of:

(i) a first mode in which the valve system causes fluid to pass through the first fluid inlet and then through the fluid separation section and fluid radiation section and then through the fluid outlet,

(ii) a second mode in which the valve system causes fluid to pass through the second fluid inlet so as to substantially bypass the fluid separation section and pass through the fluid radiation section and then through the fluid outlet,

(iii) a third mode in which the valve system causes fluid to substantially bypass the fluid treatment system, and

(iv) a fourth mode in which the valve system causes fluid to backwash through the fluid separation section, wherein the backwash element comprises a backwash valve element configured to be operated between an open position in which at least one separation element is backwashed and a closed position to define a backwash cycle.

2. The fluid treatment system defined in claim 1 , wherein the valve system comprises a first valve element and a second valve element.

3. The fluid treatment system defined in claim 2 , wherein, in the first mode, the first valve element is in an open position and the second valve element is in a closed position.

4. The fluid treatment system defined in claim 2 , wherein, in the second mode, the first valve element is in a closed position and the second valve element is in an open position.

5. The fluid treatment system defined in claim 1 , wherein the fluid separation section comprises a plurality of separation elements arranged in a separation element array.

6. The fluid treatment system defined in claim 5 , wherein each separation element is configured to receive an independent flow of fluid with respect to an adjacent separation element.

7. The fluid treatment system defined in claim 5 , wherein each separation element comprises a longitudinal axis that is substantially parallel with respect to a longitudinal axis of at least two adjacent separation elements.

8. The fluid treatment system defined in claim 1 , wherein the valve system comprises a third valve element and, in the third mode, the first valve element is in closed position, the second valve element is in a closed position and the third valve element is in an open position.

9. The fluid treatment system defined in claim 1 , wherein the fluid radiation section comprises at least one elongate radiation source assembly.

10. The fluid treatment system defined in claim 9 , wherein the elongate radiation source assembly comprises a longitudinal axis that is configured to be transverse to the direction of fluid flow through the fluid radiation section.

11. The fluid treatment system defined in claim 1 , wherein the fluid separation section and the fluid radiation section are disposed serially along a direction of fluid flow through the fluid treatment zone.

12. The fluid treatment system defined in claim 1 , wherein the fluid separation section and the fluid radiation section are disposed non-coaxially along a direction of fluid flow through the fluid treatment zone.

13. The fluid treatment system defined in claim 1 , wherein the fluid separation section and the fluid radiation section are disposed coaxially along a direction of fluid flow through the fluid treatment zone.

14. The fluid treatment system defined in claim 1 , wherein the fluid separation section and the fluid radiation section are disposed in a ship.

15. The fluid treatment system defined in claim 1 , wherein the housing is pressurized.

16. The fluid treatment system defined in claim 1 , wherein the fluid treatment system deballasts a ship.

17. A fluid treatment system comprising:

a housing;

a first fluid inlet in the housing;

a second fluid inlet in the housing;

a fluid outlet in the housing;

a fluid treatment zone disposed in the housing, the fluid treatment zone comprising (i) a fluid separation section and (ii) a fluid radiation section in fluid communication with one another and in fluid communication with the first fluid inlet, the second fluid inlet and the fluid outlet,

at least a portion of the fluid separation section being disposed within at least a portion of the fluid radiation section,

wherein the fluid separation section comprises a plurality of separation elements arranged in a separation element array,

wherein the fluid separation section further comprises a backwash element, the backwash element including an arm portion rotatably movable with respect to adjacent separation elements; and

a programmable system control programmed to operate a valve system in each of:

(i) a first mode in which the valve system causes fluid to pass through the first fluid inlet and then through the fluid separation section and fluid radiation section and then through the fluid outlet,

(ii) a second mode in which the valve system causes fluid to pass through the second fluid inlet so as to substantially bypass the fluid separation section and pass through the fluid radiation section and then through the fluid outlet,

(iii) a third mode in which the valve system causes fluid to substantially bypass the fluid treatment system, and

(iv) a fourth mode in which the valve system causes fluid to backwash through the fluid separation section, wherein the backwash element comprises a backwash valve element configured to be operated between an open position in which at least one separation element is backwashed and a closed position to define a backwash cycle.

18. The fluid treatment system defined in claim 17 , wherein the valve system comprises a first valve element, and second valve element, and a third valve element, wherein in the third mode, the first valve element is in closed position, the second valve element is in a closed position, and the third valve element is in an open position.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 23, 2013
From: DACOSTA, MATTHEW; FRASER, JIM; LATIMER, GLEN
To: TROJAN TECHNOLOGIES
Reel/Frame 030853/0089 →
Continuity (2)
Provisional Application 61411679 · Nov 9, 2010
Related Publication 20140042062A1 · Feb 13, 2014
Cited By (1)
US 12,600,441