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Method for measuring specific heat ratio of air through vibration of small ball

A technology of specific heat capacity ratio and vibration measurement, applied in the direction of material thermal development, etc., can solve problems such as difficulty in realization, rotation uncertainty, uneven surface, etc., and achieve the effect of low cost and simple structure

Inactive Publication Date: 2014-12-24
SICHUAN UNIV
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Problems solved by technology

[0006] (2) The non-equivalence of the force above and below the small hole does not have the mechanical conditions of simple harmonic vibration: the thrust of the steel ball A on the upper and lower ends of the small hole is different, and the thrust on the lower end of the small hole is different. The thrust of the gas is large, the thrust on the upper end (the gas leaks from the small hole) is small, and the airflow environment in which the ball moves is abrupt. Both documents are skeptical about its principle; if there is no small hole, The steel ball is subjected to the thrust produced by the pressure difference, and the small ball will always rise without vibrating. Although, in the document "Improvement of the Experimental Method for Measuring the Specific Heat Capacity Ratio of Gas by Vibration Method", it is proposed to find the equilibrium position of the steel ball below the small hole , and then produce a vibration with an amplitude of about 1cm. Due to the lack of external force, it is difficult to achieve only through the adjustment of the air flow. The reason is that the steel ball will descend when the air flow is small, the steel ball will rise when the air flow is large, and the steel ball will be stable when the air flow is appropriate. Then After the steel ball stabilizes, the airflow must be increased to promote its rise. After rising for a certain distance, it must continue to return to a suitable airflow so that the thrust generated by the pressure difference is equal to the gravity. This step is difficult to achieve;
[0007] (3) The steel ball A will rotate and collide with the tube wall during the movement: the literature "Improvement of the Experimental Method for Measuring the Specific Heat Capacity Ratio of Gases by the Vibration Method" also found the phenomenon of rotation (called spin in the literature) and collision. We found that the reflected light of ball A changed during the vibration process, and then we drew a cross on the surface of steel ball A with a red marker pen, and found that the cross of steel ball A rotated during the vibration process, and different instruments and different The direction of its rotation is also changing over time. This result shows us that the surface of the pipe wall or / and the steel ball A is not uniform, causing the steel ball A to rotate under asymmetric force. We also found that the frequency of its rotation is between Different instruments and different times also show differences. In other words, the steel ball A is not in a laminar flow environment, but has a certain turbulent flow, and its rotational kinetic energy will affect the accuracy of the measurement. Moreover, due to the uncertainty of the rotation, it cannot Quantitatively corrected

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  • Method for measuring specific heat ratio of air through vibration of small ball
  • Method for measuring specific heat ratio of air through vibration of small ball
  • Method for measuring specific heat ratio of air through vibration of small ball

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Embodiment Construction

[0012] A hollow cylinder made of elastic rubber, with a hard circular panel sealed inside the rubber on its upper end and lower end, and a helical spring wire sealed in the rubber on its side; the inside of the hollow cylinder, the upper end The inner radius of the lower surface and the inner surface of the hollow cylinder is R, and the height of the hollow cylinder is h; the purpose of the hard panels on the upper and lower surface and the elastic wire on the side is to maintain the cylinder when the internal pressure changes. shape. A metal sphere is fixed on the upper end surface outside the hollow cylinder. The quality of the metal sphere is relatively heavy, and the purpose is to ignore the mass of the side of the cylinder.

[0013] According to the adiabatic equation PV γ =C,

[0014] Among them, P is the pressure value of the sealed air, V is the volume of the sealed air, γ is the specific heat capacity ratio of the air (also known as the adiabatic coefficient of the ...

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Abstract

The invention discloses a method for measuring a specific heat ratio of air through vibration of a small ball. A hard circular panel is sealed in rubber on each of the upper end face and the lower end face of a hollow cylinder prepared from elastic rubber; a helical metal spring wire is sealed in rubber on the side surface of the hollow cylinder; the radiuses of the interior, the upper end face and the lower end face of the hollow cylinder are R; the height in the hollow cylinder is h; a metal ball body is fixed on the upper end face of the outer side of the hollow cylinder; the panel at the upper end is stretched or compressed through the metal ball body on the panel on the upper end face, so that the panel on the upper end face and the attached metal ball body vibrate together; the sum of the mass of the panel on the upper end face and the mass of the attached metal ball body is m; a vibration period T and a value P of atmospheric pressure intensity are measured, so that the specific heat ratio gamma of air is 4Pimh / (R2T2P). The method has the benefits that air sealing is high in elasticity; the experiment principle is more precise; strict simple harmonic vibration is realized; an inflation device is not needed, and the device is simpler in structure and lower in cost.

Description

technical field [0001] The invention relates to the measurement of physical constants, in particular, it provides a method for measuring air specific heat ratio by vibration method. Background technique [0002] Vibration method to measure specific heat capacity ratio of air is a commonly used method for measuring specific heat capacity ratio. The measurement method used in the physics laboratory, the experimental principle is detailed in "Improvement of the experimental method for measuring gas specific heat capacity ratio by vibration method", Journal of Taizhou University, December 2010 No. Volume 32, Issue 6, Page 39-42, "2 Experiments", and "Experimental Analysis of Air Specific Heat Capacity Ratio Measurement by Vibration Method, Laboratory Science, Volume 16, Issue 3, June 2013, Issue 35-37" "1.1 Principles of the original experiment". [0003] The principle adopted by the prior art, see figure 1 , the gas injection port injects gas continuously and stably, and the ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01N25/20
Inventor 饶大庆朱俊雍志华罗明蓉李娟邹旭敏王维果穆万军胡再国程艳梁雅庭刘石丹田野中于白茹李伟李紫原梁小冲
Owner SICHUAN UNIV