Feedwater debris trap
View Patent ↗A debris filter trap to prevent potentially damaging debris carried by the feedwater entering the pressure vessel of a once through steam generator from entering into the section of tubes which are positioned within the confines of an integrally contained economizer of the once through steam generator. The trap will remove foreign material, from the feedwater flow, that is larger than the space between the tubes, and thus prevent debris particles that are large enough to get lodged in the tube spacing from entering the economizer.
1. An improved vapor generator having a pressure vessel, a plurality of heat exchanger tubes extending within the pressure vessel, the heat exchanger tubes adapted to accommodate a flow therethrough of a hot primary fluid, the heat exchanger tubes having heat exchanger surfaces, an economizer disposed within the pressure vessel, the economizer being spaced-apart from the pressure vessel to provide an annular downcomer passage, the economizer enclosing a portion of the heat exchanger surfaces of the tubes to preheat feedwater flow introduced into the economizer, the improvement comprising:
an annular support ring disposed within the annular downcomer passage, the annular support ring having a plurality of openings circumferentially spaced about the annular ring for conveying feedwater therethrough, and
a plurality of elongated cylindrical tube filters each having a closed top end, an open bottom end covering and corresponding to each of the plurality of openings, and a plurality of filter holes perforating the cylindrical portion of each of the cylindrical tube filters for capturing and retaining debris carried by the feedwater fluid before it passes into the economizer to prevent entry of the debris into the economizer.
2. The improved vapor generator of claim 1 , wherein the plurality of filter holes perforating each of the cylindrical tube filters are radially oriented and profiled with a tapered inlet geometry to reduce feedwater flow pressure drop.
3. The improved vapor generator of claim 1 , wherein the plurality of filter holes are sized to remove foreign material from the feedwater fluid flow that is larger than the space between the tubes positioned in the economizer.
4. The improved vapor generator of claim 1 , wherein the annular support ring is attached to the economizer and the pressure vessel.
5. The improved vapor generator of claim 1 , wherein the annular support ring is attached either to the economizer or to the pressure vessel.
6. The improved vapor generator of claim 1 , wherein a free side of the annular support ring is spaced from either the economizer or the pressure vessel a distance equal to or less than a width of a perforation in said perforated tube filters.
7. The improved vapor generator of claim 1 , wherein the annular support ring spanning a cross section of the annular downcomer passage is located near a bottom region of the annular downcomer passage.