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NUMERICAL METHOD FOR SPHERICAL BUBBLE GROWTH IN SUPERHEATED LIQUIDS

机译:过热液体球泡生长的数值方法

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A simple mathematical model and numerical method have been developed which accurately predict the moving boundary problem associated with spherically symmetric phase growth in an unbounded medium. Spherically symmetric bubble growth curves in initially isothermal liquids have been generated for four test cases covering a range of system pressures and initial liquid superheats for two different fluids, water and R113. The influences of the input parameters have been scrutinized and the accuracy of the numerical solutions has been confirmed by comparison with analytic approximations and experimental measurements. The main objectives of the study are to present a straightforward mathematical and numerical treatment of the problem and to provide benchmark bubble growth curves in order to provide a stepping stone for the development of more complex bubble growth theories such as those required to predict bubble growth during nucleate pool boiling.
机译:已经开发了一种简单的数学模型和数值方法,其精确地预测了与未绑定介质中的球形对称相位生长相关的移动边界问题。初始等温液中的球形对称气泡生长曲线已经为覆盖了两种不同流体,水和R113的系统压力和初始液体过热的四个测试用例。通过与分析近似和实验测量相比,已经仔细审查了输入参数的影响,并确认了数值溶液的准确性。该研究的主要目标是出现一个问题的直接数学和数值治疗,并提供基准泡沫生长曲线,以便为更复杂的泡沫生长理论提供更复杂的泡沫增长理论的步进石,例如预测泡沫增长核心池沸腾。

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