IP Library Patent Application 13400942
Patent Application
App. No. 13/400,942

DENSITY MEASURING SYSTEM AND DENSITY MEASURING METHOD

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Quick Facts
Patent No.
US None
App. No.
13/400,942
Abstract

A density measuring system, including a container into which a gas is injected, provided with a heating element to which a variety of different voltages is applied; an equation storage device storing a density calculating equation that has, as independent variables, electrical signals obtained from the heating element when each of the plurality of different voltages is applied and has the density as a dependent variable; and a density calculating portion calculating a measured value for the density of the gas that is injected into the container, through substituting measured values for the electrical signals from the heating element into the independent variables of the density calculating equation.

Claims (33)

1 . A density measuring system, comprising:

a measuring portion measuring a measured value of at least a gas radiation coefficient or a thermal conductivity;

a storage device storing a correlation between at least a radiation coefficient or a thermal conductivity and a density; and

a density calculating portion calculating a measured value for a density of the gas based on at least the measured value for the gas radiation coefficient or thermal conductivity and the correlation.

2 . The density measuring system as set forth in claim 1 , wherein:

the measuring portion measures a measured value for a pressure of the gas;

the correlation includes a relationship having a pressure of a gas; and

the density calculating portion calculates a measured value for a density of a gas based on at least one of the measured value for the radiation coefficient or thermal conductivity the gas, the measured value for the pressure, and the correlation.

3 . The density measuring system as set forth in claim 1 , wherein:

the correlation is based on density values for a plurality of sample mixed gases that include a plurality of types of gas components, and respective values for the radiation coefficients or thermal conductivities of the plurality of sample mixed gases.

4 . The density measuring system as set forth in claim 3 , wherein:

the correlation is obtained by support vector regression.

5 . The density measuring system as set forth in claim 1 , further comprising:

a calorific value calculating portion calculating a measured value for the calorific value of a gas injected into the measuring portion, based on a correlation relating to a measured value of at least the radiation coefficient or the thermal conductivity of the gas and the calorific value, where the memory device further stores at least a correlation the radiation coefficient or the thermal conductivity and the calorific value.

6 . The density measuring system as set forth in claim 5 , wherein: the correlation regarding the calorific value is based on calorific values for a plurality of sample mixed gases that include a plurality of types of gas components, and respective values for the radiation coefficients or thermal conductivities of the plurality of sample mixed gases.

7 . The density measuring system as set forth in claim 6 , wherein:

the correlation is obtained by support vector regression.

8 . A method for measuring a density of a gas, comprising the steps of:

measuring at least one of a gas radiation coefficient or a gas thermal conductivity;

preparing a correlation between at least one of the radiation coefficient or the thermal conductivity and a density; and

calculating a measured value density of the gas based on at least one of the radiation coefficient or the thermal conductivity the gas and the correlation.

9 . The method for measuring a density as set forth in claim 8 , further comprising the step of:

measuring the pressure of the gas; wherein the calculating step calculates the measured value density of the gas based on at least one of the radiation coefficient, the thermal conductivity the gas, or the pressure, and the correlation.

10 . The method for measuring a density as set forth in claim 8 , further comprising the step of:

obtaining the correlation based on density values for a plurality of sample mixed gases that include a plurality of types of gas components, and respective values for radiation coefficients or thermal conductivities of the plurality of sample mixed gases.

11 . method for measuring a density as set forth in claim 10 , wherein:

the Obtaining step includes using support vector regression to obtain the correlation.

12 . The method for measuring a density as set forth in claim 8 , further comprising the steps of:

preparing a correlation between at least a radiation coefficient or a thermal conductivity and a calorific value; and

calculating a calorific value of the gas based on at least the radiation coefficient or the thermal conductivity the gas and the correlation regarding the calorific value.

13 . The method for measuring a density as set forth in claim 12 , further comprising the step of obtaining the correlation regarding the calorific value based on calorific values for a plurality of sample mixed gases that include a plurality of types of gas components, and respective values for radiation coefficients or thermal conductivities of the plurality of sample mixed gases.

14 . The method for measuring a density as set forth in claim 13 , wherein:

the obtaining step includes using support vector regression to obtain the correlation relating to the calorific value.

Assignments (2)
CHANGE OF NAME Recorded May 10, 2012
From: YAMATAKE CORPORATION
To: AZBIL CORPORATION
Reel/Frame 028187/0739 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 21, 2012
From: OOISHI, YASUHARU
To: YAMATAKE CORPORATION
Reel/Frame 027735/0213 →