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자료유형
학술저널
저자정보
저널정보
한국태양에너지학회 한국태양에너지학회 논문집 태양에너지 제5권 제2호
발행연도
1985.11
수록면
11 - 19 (9page)

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In this paper, the interface stability not to occur mixing and entrainment between the adjacent layers has been studied in the case of the selective withdrawal of a stratum and the injection in stratified l1uid formed by the density difference in a small solar pond.
There are stability parameter, Richardson number, Rayleigh number and Froude number as the parameters governing stability in order to measure the interface stability on the stratified fluid.
The model which could measure the interface stability on the stratified t1uid was the small solar pond composed by I meters wide, 2 meters high, and 5 meters long. In order to measure the interface stability on the stratified t1uid at the inlet port, the middle section and the outlet port, Richardson number. Rayleigh number, and Froude number involved in the parameters governing the stability were calculated by means of the data resulted from the test of the study on hydrodynamic stability between the convective and nonconvective layers in that solar pond.
Richardson number written by the ratio of inertia force to buoyancy force can be used in order to measure the stability on the stratified fluid related to the buoyancy force generated from the injection of fluid. Rayleigh number written by the product of Grashof number by Prandtl number can be used in order to measure the stability of the t1uid related to the heat flux and diffusivity of viscosity. Froude number written by the ratio of gravity force to inertia force can be used in order to measure the stability of the nonhomogeneous fluid related to the density difference.
As the result of calculating the parameters governing stability, the interface stability on the stratified fluid couldn't be identified below the 70cm height from the bottom of the solar pond, but it could be identified above the 70cm height from it at the inlet port, the middle section and the outlet port.
When compared with such the three parameters as Richardson Humber, Rayleigh number, Froude number, the calculated result was in accord with them at inlet port, the middle section and the outlet port. Henceforth, it is learned that even though any of the three parameters is used for the purpose of measuring the interface stability on the stratified fluid, the result will be the same with them.
It is concluded that all the use of Richardson number, Rayleigh number, and Froude number, is desirable and infallible to measure the interface stability on the stratified fluid in the case of considering the exist of the fluid flow and the heat flux like the model of the solar pond.

목차

Abstract

1. 序論

2. 成層流體流動의 安定

3. 成層流體의 各種 安定支配變數의 安定基準

4. 水槽와 流動條件

5. 結果 및 考察

6. 結論

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UCI(KEPA) : I410-ECN-0101-2009-563-018169365