IP Library Granted Patent US 10,358,365
Granted Patent B2
US 10,358,365 · App. 15/256,932 · Granted Jul 23, 2019

Distributor pipe and trickling filter

Inventors: Masao Tabata (Tokyo, JP); Tomoki Kurinami (Tokyo, JP)
Assignee: Metawater Co., Ltd.
C02F3/043B05B1/20B05B3/06B05B3/02C02F2103/005C02F2209/40Y02W10/15
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Quick Facts
Patent No.
US 10,358,365
App. No.
15/256,932
Granted
Jul 23, 2019
Kind
B2
Abstract

A distributor pipe includes: a main pipe including a cylindrical part; and a plurality of branch pipes communicating with the main pipe and arranged, on a cylindrical curved surface of the main pipe, side by side along a longitudinal direction of the main pipe. A pipe diameter ratio D 1 /D 0 of a pipe diameter D 1 of the branch pipe to a pipe diameter D 0 of the main pipe is greater than 0.2 and less than 0.8, and the plurality of branch pipes are arranged according to: respective effluent flow ratios, at a time a liquid flows into the main pipe in a predetermined flow velocity range, determined in accordance with respective arrangement orders of the plurality of branch pipes along a direction in which the liquid flows and along the longitudinal direction of the main pipe; and respective areas of circular or hollow-circular sections allotted to the plurality of branch pipes.

Claims (34)

1. A distributor pipe, comprising:

a main pipe including a cylindrical part;

a plurality of branch pipes communicating with the main pipe and arranged, on a cylindrical curved surface of the main pipe, side by side along a longitudinal direction of the main pipe; and

an influent pipe from which liquid is provided to the main pipe, wherein

the influent pipe provides the liquid to the main pipe with a flow velocity range greater than 0.5 m/s and not greater than 100 m/s and a pipe diameter ratio D 1 /D 0 of a pipe diameter D 1 of the branch pipe to a pipe diameter D 0 of the main pipe is greater than 0.2 and less than 0.8 such that respective effluent flow ratios which are ratios of effluent rates from the respective branch pipes to an influent rate to the main pipe is set so that the closer the branch pipe is to a downstream-side of the liquid the larger the effluent flow ratio becomes, and

the plurality of branch pipes are arranged with intervals having predetermined interval lengths between one another according to: the effluent flow ratios and spraying allotment areas where the liquid is sprayed from the plurality of branch pipes, wherein

the cylindrical part of the main pipe is a hollow cylindrical part having an upstream influent end and a downstream effluent end, each at opposite ends of the main pipe, and the hollow cylindrical part of the main pipe having a substantially constant diameter that extends to the outermost edge of the effluent end of the main pipe,

a discharge outlet nozzle is provided at the outermost end of the hollow cylindrical part at the effluent end of the main pipe, such that the discharge nozzle is in direct communication with the substantially constant diameter at the outermost edge of the effluent end of the main pipe, for discharging liquid to the outside from the hollow cylindrical part of the main pipe, and

a pipe diameter D 2 of the discharge outlet nozzle is smaller than the pipe diameter D 1 of the branch pipes.

2. The distributor pipe according to claim 1 , wherein the flow velocity range is greater than 0.5 m/s and not greater than 5.0 m/s.

3. The distributor pipe according to claim 1 , wherein the number of the branch pipes is five to nine.

4. The distributor pipe according to claim 2 , wherein the number of the branch pipes is five to nine.

5. The distributor pipe according to claim 1 , wherein the ratio D 1 /D 0 of the pipe diameter D 1 of the branch pipe to the pipe diameter D 0 of the main pipe is 0.5 to 0.7.

6. A trickling filter, comprising:

the distributor pipe according to claim 1 ; and

a filter bed performing a biological treatment to treatment target water discharged from the distributor pipe,

wherein the spraying allotment area in each of the branch pipes is a spraying area along a horizontal plane over the filter bed.

7. A trickling filter, comprising:

the distributor pipe according to claim 2 ; and

a filter bed performing a biological treatment to treatment target water discharged from the distributor pipe,

wherein the spraying allotment area in each of the branch pipes is a spraying area along a horizontal plane over the filter bed.

8. A trickling filter, comprising:

the distributor pipe according to claim 3 ; and

a filter bed performing a biological treatment to treatment target water discharged from the distributor pipe,

wherein the spraying allotment area in each of the branch pipes is a spraying area along a horizontal plane over the filter bed.

9. A trickling filter, comprising:

the distributor pipe according to claim 4 ; and

a filter bed performing a biological treatment to treatment target water discharged from the distributor pipe,

wherein the spraying allotment area in each of the branch pipes is a spraying area along a horizontal plane over the filter bed.

10. The trickling filter according to claim 6 , wherein the distributor pipe of the trickling filter is held by being suspended from above the filter bed.

11. The trickling filter according to claim 7 , wherein the distributor pipe of the trickling filter is held by being suspended from above the filter bed.

12. The trickling filter according to claim 8 , wherein the distributor pipe of the trickling filter is held by being suspended from above the filter bed.

13. The trickling filter according to claim 9 , wherein the distributor pipe of the trickling filter is held by being suspended from above the filter bed.

14. The distributor pipe according to claim 5 , wherein a pipe diameter ratio D 2 /D 0 is greater than 0 and smaller than 0.65.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 6, 2016
From: TABATA, MASAO; KURINAMI, TOMOKI
To: METAWATER CO., LTD.
Reel/Frame 039636/0106 →
Priority Claims (1)
JP 2014-070129 · Mar 28, 2014 · national
Continuity (2)
Continuation PCTJP2014079631 · Nov 7, 2014
Related Publication 20160368799A1 · Dec 22, 2016