IP Library › Granted Patent US 12,618,598
Granted Patent B2
US 12,618,598 · App. 18/457,911 · Granted May 5, 2026

Snow environment test apparatus and snow environment test method

Inventors: Hiroyuki Enoki (Osaka, JP); Haruki Seto (Osaka, JP)
Assignee: ESPEC CORP.
F25C3/04G01N1/42
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Quick Facts
Patent No.
US 12,618,598
App. No.
18/457,911
Granted
May 5, 2026
Kind
B2
Abstract

A snow environment test apparatus includes a first nozzle that injects water particles, a second nozzle that injects water particles smaller in size than the water particles from the first nozzle, an air conditioner that regulates a temperature in a test chamber to a set temperature, a state selection section that sets a state of snow to be caused to fall, and a flow rate regulation valve that regulates a ratio between quantities of water to be supplied to the first nozzle and to the second nozzle for obtaining the state of the snow set by the state selection section at the set temperature as a temperature at which a snow environment is obtained.

Claims (31)

1 . A snow environment test apparatus for creating a snow environment in a test chamber, the apparatus comprising:

a first nozzle configured to inject water particles;

a second nozzle configured to inject water particles smaller in size than the water particles from the first nozzle;

an air conditioner for regulating a temperature in the test chamber to a set temperature;

a controller comprising a computer; and

an input device operatively connected to the controller;

wherein the controller includes a state selector configured to set, based on an input by a user via the input device, a degree of sleet based on a ratio between rain and snow as a state of snow to be caused to fall or configured to set, based on an input by the user via the input device, one out of snow, sleet, and rain as a state of snow to be caused to fall; and

wherein the snow environment test apparatus further comprises a flow rate regulator configured to regulate a ratio between quantity of water to be supplied to the first nozzle and quantity of water to be supplied to the second nozzle for obtaining the state of the snow set in the state selector at the set temperature as a temperature at which a snow environment is obtained.

2 . The snow environment test apparatus according to claim 1 , wherein the flow rate regulator is configured to regulate the ratio between the quantity of the water to be supplied to the first nozzle and the quantity of water to be supplied to the second nozzle while a total flow rate of the water to be supplied to the first nozzle and the second nozzle is kept constant.

3 . The snow environment test apparatus according to claim 1 , wherein the flow rate regulator is configured to regulate the ratio between the quantity of the water to be supplied to the first nozzle and the quantity of water to be supplied to the second nozzle so that the quantity ratio of the water to be supplied to the first nozzle is greater in a case of the set temperature being a second temperature than in a case of the set temperature being a first temperature, the second temperature being lower than the first temperature.

4 . The snow environment test apparatus according to claim 1 , wherein the flow rate regulator is configured to regulate the ratio between the quantity of the water to be supplied to the first nozzle and the quantity of water to be supplied to the second nozzle so that the quantity ratio of the water to be supplied to the second nozzle is greater in a case of the set temperature being a second temperature than in a case of the set temperature being a first temperature, the second temperature being higher than the first temperature.

5 . The snow environment test apparatus according to claim 1 ,

wherein at least the second nozzle is configured by a two-fluid nozzle, the apparatus further comprising:

a pressure regulator configured to regulate a pressure of air to be supplied to the second nozzle for creation of a snow environment where sleet is caused to fall in a case where the sleet is set as the snow state by the state selector, the sleet including snow and rain.

6 . The snow environment test apparatus according to claim 1 ,

wherein at least the second nozzle is configured by a two-fluid nozzle, the apparatus further comprising:

a pressure regulator configured to regulate a pressure of air to be supplied to the second nozzle,

wherein the pressure regulator is configured to make the pressure of the air to be supplied to the second nozzle higher as the total flow rate of the water to be supplied to the first nozzle and the second nozzle is greater in a case where sleet including snow and rain is set as the state of snow by the state selector.

7 . The snow environment test apparatus according to claim 1 ,

wherein at least the second nozzle is configured by a two-fluid nozzle, the apparatus further comprising:

a pressure regulator configured to regulate a pressure of air to be supplied to the second nozzle for a change in quality of snow to be caused to fall.

8 . A snow environment test method for creating a snow environment in a test chamber, the method comprising:

a user setting a temperature in the test chamber;

a user setting a degree of sleet based on a ratio between rain and snow as a state of snow to be caused to fall, or setting one out of snow, sleet, and rain as a state of snow to be caused to fall;

setting a ratio between a quantity of water to be supplied to a first nozzle and a quantity of water to be supplied to a second nozzle to obtain the state of the snow set at the set temperature in the test chamber;

regulating a temperature in the test chamber to the set temperature by an air conditioner;

supplying water to the first nozzle and the second nozzle at the set ratio; and

injecting water from the first nozzle and from the second nozzle to create the snow environment, the water from the second nozzle including water particles smaller in size than water particles included in the water from the first nozzle.

9 . The snow environment test method according to claim 8 , wherein a total flow rate of the water to be supplied to the first nozzle and the second nozzle is constant.

10 . The snow environment test method according to claim 8 , wherein the ratio between the quantity of the water to be supplied to the first nozzle and the quantity of water to be supplied to the second nozzle is set so that the quantity ratio of the water to be supplied to the first nozzle is greater in a case of the set temperature being a second temperature than in a case of the set temperature being a first temperature, the second temperature being lower than the first temperature.

11 . The snow environment test method according to claim 8 , wherein the ratio between the quantity of the water to be supplied to the first nozzle and the quantity of water to be supplied to the second nozzle is set so that the quantity ratio of the water to be supplied to the second nozzle is greater in a case of the set temperature being a second temperature than in a case of the set temperature being a first temperature, the second temperature being higher than the first temperature.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 29, 2023
From: ENOKI, HIROYUKI; SETO, HARUKI
To: ESPEC CORP.
Reel/Frame 064740/0341 →
Priority Claims (1)
JP 2022-137109 · Aug 30, 2022 · national
Continuity (1)
Related Publication 20240068729A1 · Feb 29, 2024
References Cited (10)
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The extended European search report issued by the European Patent Office on Jan. 23, 2024, which corresponds to European Patent Application No. 23192973.8-1201 and is related to U.S. Appl. No. 18/457,911. [cited by applicant]
“Notice of Reasons for Refusal” Office Action issued in JP 2022-137109; mailed by the Japanese Patent Office on Feb. 25, 2025. [cited by applicant]