IP Library Granted Patent US 10,197,293
Granted Patent B2
US 10,197,293 · App. 15/122,834 · Granted Feb 5, 2019

Scale trapping unit and water heater

Inventors: Aya Kawashima (Chiyoda-ku, JP); Seiji Noda (Chiyoda-ku, JP); Shigeru Iijima (Chiyoda-ku, JP); Seiji Furukawa (Chiyoda-ku, JP); Kazuhiro Miya (Chiyoda-ku, JP); Kazutaka Suzuki (Chiyoda-ku, JP); Hirokazu Minamisako (Chiyoda-ku, JP)
Assignee: MITSUBISHI ELECTRIC CORPORATION
F24D19/0092C02F1/02C02F1/28C02F5/00F24D17/02C02F2001/5218
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Quick Facts
Patent No.
US 10,197,293
App. No.
15/122,834
Granted
Feb 5, 2019
Kind
B2
Abstract

A scale trapping unit includes a casing having a water inlet and a water outlet at respective ends, and a scale adsorbing element loaded in the casing, the scale adsorbing element having opening ports, each of the opening ports having a representative length greater than a length of a scale particle. The casing has a void region at least at the end where the water inlet is located. A scale trapping unit inlet pipe is perpendicularly connected to a central portion of a bottom surface at the end of the casing where the water inlet is located. The scale trapping unit inlet pipe, the void region, and the scale adsorbing element are linearly aligned so that water flows therethrough in a constant direction.

Claims (19)

1. A scale trapping unit comprising:

a casing having a water inlet and a water outlet at respective ends; and

a scale adsorbing element loaded in the casing, the scale adsorbing element having opening ports, each of the opening ports having a representative length greater than a length of a scale particle,

wherein the casing has a void region at least at the end where the water inlet is located,

wherein an expression of 0.005≤X/Y≤1.5 is satisfied, where X is a volume of the void region and Y is a volume of the scale adsorbing element.

2. The scale trapping unit of claim 1 , wherein a water inlet pipe is perpendicularly connected to a central portion of a bottom surface at the end of the casing where the water inlet is located, the water inlet pipe being linearly aligned with the void region and the scale adsorbing element so that water flows therethrough in a constant direction.

3. The scale trapping unit of claim 1 , wherein

the scale adsorbing element is configured to have adsorption force to trap the scale particles, and

when the scale particles are trapped onto the scale adsorbing element maintained at high temperature with hot water, the scale particles are crystallized on a surface of the scale adsorbing element.

4. The scale trapping unit of claim 1 , wherein a central portion of an end of the scale adsorbing element located on a side of the water inlet has a recessed shape being recessed toward a central portion of an end of the scale adsorbing element located on a side of the water outlet.

5. The scale trapping unit of claim 1 , wherein the void region is formed at each of the ends in the casing, and the central portions of the ends of the scale adsorbing element each has a recessed shape being recessed toward a corresponding one of the central portions of the scale adsorbing element.

6. The scale trapping unit of claim 1 , wherein the representative length is within a range of 1 mm to 20 mm.

7. The scale trapping unit of claim 1 , wherein an expression of Ld=4S/P is satisfied, where Ld is the representative length, S is an area of the opening ports, and P is an outer peripheral length of the opening ports.

8. The scale trapping unit of claim 1 , wherein the scale adsorbing element includes a stack of plate-shaped members, each of the plate-shaped members having the opening ports.

9. The scale trapping unit of claim 1 , wherein the scale adsorbing element includes a helically wound fiber.

10. A water heater comprising:

a hot water storage tank; and

a heat exchanger heating water to be stored in the hot water storage tank, the hot water storage tank and the heat exchanger being connected to each other by pipes to form a hot water circulation circuit,

wherein the scale trapping unit of claim 1 is provided at at least one location in the hot water circulation circuit.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 31, 2016
From: KAWASHIMA, AYA; NODA, SEIJI; IIJIMA, SHIGERU; FURUKAWA, SEIJI; MIYA, KAZUHIRO; SUZUKI, KAZUTAKA; MINAMISAKO, HIROKAZU
To: MITSUBISHI ELECTRIC CORPORATION
Reel/Frame 039605/0052 →
Priority Claims (1)
JP 2014-040314 · Mar 3, 2014 · national
Continuity (1)
Related Publication 20170067654A1 · Mar 9, 2017
Cited By (1)
US 12,638,215