IP Library Granted Patent US 10,330,661
Granted Patent B2
US 10,330,661 · App. 15/755,620 · Granted Jun 25, 2019

Disaster prediction system, moisture prediction device, disaster prediction method, and program recording medium

Inventors: Ryota Mase (Tokyo, JP); Katsuhiro Ochiai (Tokyo, JP)
Assignee: NEC CORPORATION
G01N33/246E02D17/20G01W1/14G08B21/20G08B21/10G08B31/00
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Quick Facts
Patent No.
US 10,330,661
App. No.
15/755,620
Granted
Jun 25, 2019
Kind
B2
Abstract

In order to achieve highly accurate prediction across a wide area for disasters caused by rainfall, this disaster prediction system includes: soil moisture acquisition means that acquires amount of moisture in soil at a specified site, ground surface moisture acquisition means that acquires amount of moisture at a ground surface within a given range that includes the specified site, and estimation means estimates amount of moisture in soil at a freely-selected site in the given range or a parameter that indicates a property of soil at the freely-selected site in the given range, based on the amount of moisture in the soil at the specified site and the amount of moisture at the ground surface within the given range.

Claims (30)

1. A disaster prediction system comprising:

at least one processing component configured to:

acquire amount of moisture in soil at a specified site;

acquire amount of moisture at a ground surface within a given range including the specified site; and

estimate amount of moisture in soil at a freely-selected site in the given range or a parameter indicating a property of soil at the freely-selected site in the given range, based on the amount of moisture in the soil at the specified site and the amount of moisture at the ground surface within the given range.

2. The disaster prediction system according to claim 1 , wherein the at least one processing component is further configured to:

estimate a parameter indicating a property of soil at the freely-selected site in the given range based on the amount of moisture in soil at the specified site and the amount of moisture at the ground surface within the given range, and estimates the amount of moisture in soil at the freely-selected site in the given range, based on the parameter that is estimated and the amount of rainfall at the site.

3. The disaster prediction system according to claim 1 , wherein the at least one processing component is further configured to:

estimate the amount of moisture in soil in each mesh element in a first area including the specified site, based on the amount of rainfall for each mesh element;

correct the parameter used when estimating the amount of moisture in soil in each mesh element, in such a way that an estimation result of the amount of moisture in soil in each mesh element in the first area comes close to the amount of moisture in soil at the specified site acquired by the soil moisture acquisition means;

and

estimate the amount of moisture in soil at the freely-selected site included in the given range or the parameter indicating a property of soil at the freely-selected site in the given range, by selecting a corrected parameter corresponding to one soil type based on the amount of moisture in soil in each mesh element that is based on the amount of rainfall and is calculated using the corrected parameters corresponding to a plurality of soil types and the amount of moisture at the ground surface in the given range;

wherein the first area is set corresponding to at least a plurality of soil types.

4. The disaster prediction system according to claim 1 , wherein the at least one processing component is further configured to:

correct a parameter used for measuring the amount of moisture at the ground surface, in such a way as to come the amount of moisture at the ground surface in the given range including the specified site acquired by the ground surface moisture acquisition means close to the amount of moisture in soil at the specified site acquired by the soil moisture acquisition means; and

estimate the amount of moisture in soil at the freely-selected site in the given range, based on the amount of moisture at the ground surface in the given range measured using the corrected parameter.

5. The disaster prediction system according to claim 1 , wherein the at least one processing component is further configured to:

calculate the amount of storage and runoff volume of water on the ground surface or in the ground at the freely-selected site in the given range as the estimation result of the amount of moisture in soil, using the parameter indicating the property of soil that is corrected or estimated.

6. The disaster prediction system according to claim 5 , wherein the at least one processing component is further configured to:

calculate a degree of risk of a slope by use of the slope stability analysis formula, upon estimating the another variable using the amount of storage of water on the ground surface or in the ground estimated by the estimation means based on a relation that is modeled, the relation between the amount of storage of water on the ground surface or in the ground and another variable required for a predetermined slope stability analysis formula being modeled in advance.

7. The disaster prediction system according to claim 5 , wherein the at least one processing component is further configured to:

calculate water volume or water level of every hour of a river and calculating a degree of risk of a flood, based on the runoff volume of water on the ground surface or in the ground at the freely-selected site.

8. A disaster prediction method comprising:

acquiring amount of moisture in soil at a specified site;

acquiring amount of moisture at a ground surface within a given range that includes the specified site; and

estimating amount of moisture in soil at a freely-selected site in the given range or a parameter that indicates a property of soil at the freely-selected site in the given range based on the amount of moisture in soil at the specified site and the amount of moisture at the ground surface within the given range.

9. A non-transitory computer-readable program recording medium storing a disaster prediction program, the disaster prediction program causing a computer to execute:

processing of acquiring amount of moisture in soil at a specified site;

processing of acquiring amount of moisture at a ground surface within a given range that includes the specified site; and

processing of estimating amount of moisture in soil at a freely-selected site in the given range or a parameter that indicates a property of soil at the freely-selected site in the given range, based on the amount of moisture in soil at the specified site and the amount of moisture at the ground surface within the given range.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 27, 2018
From: MASE, RYOTA; OCHIAI, KATSUHIRO
To: NEC CORPORATION
Reel/Frame 045045/0908 →
Priority Claims (1)
JP 2015-180291 · Sep 14, 2015 · national
Continuity (1)
Related Publication 20180252694A1 · Sep 6, 2018