FIG. 1 illustrates a rear perspective view of a flow conditioner with internal vanes having 1) a flange on a first side; and 2) integral vanes on the first side at least partly following contours of an outer ring of holes or apertures according to another embodiment of the invention.
FIG. 2 illustrates a front perspective view of a flow conditioner with internal vanes of FIG. 1.
FIG. 3 illustrates a front view of the flow conditioner with internal vanes of FIG. 1.
FIG. 4 illustrates a rear view of the flow conditioner with internal vanes of FIG. 1.
FIG. 5 illustrates a side view of the flow conditioner with internal vanes of FIG. 1.
FIG. 6 illustrates a rear perspective view of a flow conditioner with internal vanes having 1) a flange on a first side; 2) integral vanes on a first side at least partly following contours of an outer ring of holes or apertures; and 3) integral vanes on a first side at least partly following contours of an inner ring of holes or apertures according to another embodiment of the present invention.
FIG. 7 illustrates a front perspective view of a flow conditioner with internal vanes of FIG. 6.
FIG. 8 illustrates a front view of the flow conditioner with internal vanes of FIG. 6.
FIG. 9 illustrates a rear view of the flow conditioner with internal vanes of FIG. 6.
FIG. 10 illustrates a side view of the flow conditioner with internal vanes of FIG. 6.
FIG. 11 illustrates a rear perspective view of a flow conditioner with internal vanes having 1) a flange on a second side; 2) integral vanes on a first side at least partly following contours of an outer ring of holes or apertures; and 3) integral vanes on a first side at least partly following contours of an inner ring of holes or apertures according to another embodiment of the present invention.
FIG. 12 illustrates a front perspective view of a flow conditioner with internal vanes of FIG. 11.
FIG. 13 illustrates a front view of the flow conditioner with internal vanes of FIG. 11.
FIG. 14 illustrates a rear view of the flow conditioner with internal vanes of FIG. 11; and,
FIG. 15 illustrates a side view of the flow conditioner with internal vanes of FIG. 11.
Patent |
Priority |
Assignee |
Title |
9334886, |
Sep 13 2012 |
Canada Pipeline Accessories, Co. Ltd. |
Flow conditioner with integral vanes |
9605695, |
May 21 2013 |
Canada Pipeline Accessories, Co. Ltd. |
Flow conditioner and method of designing same |
D732640, |
Sep 02 2013 |
CANADA PIPELINE ACCESSORIES, CO LTD |
Flow conditioner flange |
D762814, |
Apr 11 2013 |
Canada Pipeline Accessories, Co., Ltd. |
Flow conditioner |
D778247, |
Apr 16 2015 |
Veeco Instruments Inc.; VEECO INSTRUMENTS, INC |
Wafer carrier with a multi-pocket configuration |
D793971, |
Mar 27 2015 |
Veeco Instruments INC |
Wafer carrier with a 14-pocket configuration |
D793972, |
Mar 27 2015 |
Veeco Instruments INC |
Wafer carrier with a 31-pocket configuration |
D806046, |
Apr 16 2015 |
Veeco Instruments Inc. |
Wafer carrier with a multi-pocket configuration |
D852762, |
Mar 27 2015 |
Veeco Instruments Inc. |
Wafer carrier with a 14-pocket configuration |
D957568, |
Jun 25 2020 |
Wellis USA Inc. |
Spa jet multiport |
D983600, |
Oct 13 2022 |
|
Kettle nozzle |