IP Library Granted Patent US 11,242,954
Granted Patent B2
US 11,242,954 · App. 16/090,149 · Granted Feb 8, 2022

Nozzle-type steam trap

Inventors: Tsutomu Katsura (Tokyo, JP); Tomohiro Masutani (Tokyo, JP)
Assignee: ECO FIRST CO., LTD.
F16T1/34F16T1/16F16T1/38F16T1/386
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Quick Facts
Patent No.
US 11,242,954
App. No.
16/090,149
Granted
Feb 8, 2022
Kind
B2
Abstract

A nozzle-type steam trap including a venturi nozzle, an orifice nozzle, or a tunnel structure resistance nozzle minimizes the outflow of steam even when a pressure difference between a drain-water inlet and a drain-water outlet of each nozzle fluctuates, the steam trap being compatible with any usage environments and enabling maintenance and inspection to be easily performed. The nozzle-type steam trap including the venturi nozzle, the orifice nozzle, or the tunnel structure resistance nozzle includes a means for sealing the nozzle by using a drain water. The nozzle-type steam trap further includes a plurality of steam inflow ports and drain-water outflow ports and includes a closure means for determining, for a selected one of the steam inflow ports and a selected one of the drain-water outflow ports, passages of steam and drain water. More preferably, the steam trap includes a swirl flow formation means in the vicinity of the nozzle.

Claims (13)

1. A nozzle-type steam trap that causes steam flowing in from a steam transport channel to flow through a venturi nozzle, an orifice nozzle, or a tunnel structure resistance nozzle and that drains a drain water from a drain-water drainage channel, the nozzle-type steam trap comprising a nozzle sealing means disposed on a drain-water drainage side of the nozzle that has a small-diameter tube-shaped bore through which the drain water is drained, the nozzle sealing means sealing the bore by using the drain water,

wherein the nozzle sealing means is a drain-water storage portion that includes an intra-drain system drainage port connected to an extra-drain system drainage port through which the drain water is drained to an outside of a system of the nozzle-type steam trap, the extra-drain system drainage port being disposed at a portion above the intra-drain system drainage port,

wherein the steam transport channel through which the steam flows into the nozzle-type steam trap and the drain-water drainage channel through which the drain water is drained via the extra-drain system drainage port of the nozzle-type steam trap are not on an identical axis, and

wherein the steam transport channel includes a plurality of steam transport channels through which the steam flows into the system of the nozzle-type steam trap, the drain-water drainage channel includes a plurality of drain-water drainage channels through which the drain water is drained to the outside of the system of the nozzle-type steam trap from the extra-drain system drainage port, and a means for closing a selected one of the steam transport channels and a selected one of the drain-water drainage channels is provided.

2. The nozzle-type steam trap according to claim 1 , wherein a swirl flow formation means that causes steam transported from the steam transport channel to generate a swirl flow is disposed in a vicinity of a drain-water inlet of the nozzle.

3. A nozzle-type steam trap that causes steam flowing in from a steam transport channel to flow through a venturi nozzle, an orifice nozzle, or a tunnel structure resistance nozzle and that drains a drain water from a drain-water drainage channel, the nozzle-type steam trap comprising a nozzle sealing means disposed on a drain-water drainage side of the nozzle that has a small-diameter tube-shaped bore through which the drain water is drained, the nozzle sealing means sealing the bore by using the drain water,

wherein the nozzle sealing means is a drain-water storage portion that includes an intra-drain system drainage port connected to an extra-drain system drainage port through which the drain water is drained to an outside of a system of the nozzle-type steam trap, the extra-drain system drainage port being disposed at a portion above the intra-drain system drainage port, and

wherein the steam transport channel includes a plurality of steam transport channels through which the steam flows into the system of the nozzle-type steam trap, the drain-water drainage channel includes a plurality of drain-water drainage channels through which the drain water is drained to the outside of the system of the nozzle-type steam trap from the extra-drain system drainage port, and a closing means configured to close a selected one of the steam transport channels and a selected one of the drain-water drainage channels is provided.

4. The nozzle-type steam trap according to claim 3 , wherein the steam transport channel and the drain-water drainage channel are not on an identical axis.

5. The nozzle-type steam trap according to claim 3 , wherein a swirl flow formation means that causes steam transported from the steam transport channel to generate a swirl flow is disposed in a vicinity of a drain-water inlet of the nozzle.

6. The nozzle-type steam trap according to claim 3 , wherein the closing means is a three-way cock.

7. The nozzle-type steam trap according to claim 3 , wherein the closing means is a valve.

8. The nozzle-type steam trap according to claim 3 , wherein the closing means is a plug.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 21, 2020
From: KATSURA, TSUTOMU; MASUTANI, TOMOHIRO
To: ECO FIRST CO., LTD.
Reel/Frame 054128/0845 →
Priority Claims (1)
JP JP2016-075293 · Apr 4, 2016 · national
Continuity (1)
Related Publication 20210003251A1 · Jan 7, 2021
Cited By (2)
US 12,239,927 US 12,455,043