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Experimental verification of CO2 dissolution rate Due to diffusion induced convection

机译:扩散引起对流引起的二氧化碳溶出速率的实验验证

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An experimental setup has been designed for measuring the dissolution rate of buoyant CO2 into the water phase below. Experiments were performed in a high-pressure cell, where the water phase was stabilized by a porous medium to mimic the situation of a gas cap in a storage reservoir. As many previous tests have been performed in 2D cells, this setup allows for 3D measurements of diffusion-induced convection. The tests are performed at high pressure where CO2 is at high density, similar to a real storage situation and the dissolved CO2 is measured by metering the pump that is automatically maintaining constant pressure. This allows rate measurements in a 3D environment. The basic interest was to determine the dissolution rate in the convective regime, but also the diffusion coefficient of CO2 in water was determined by this experimental setup. In addition, the onset time of convection was estimated. The result show that the dissolution rate measured during convection was one to two order of magnitude faster than predicted by semi-empirical correlations obtained by numerical simulations. The estimated onset time of convection was shorter than theoretical prediction. The overall results suggest that diffusion induced convection plays a more important role than previously assumed.
机译:设计了实验装置,用于测量浮力CO2的溶出速率在下面的水相中。实验在高压池中进行,其中通过多孔介质稳定水相以使储存储存器中的气体盖的情况稳定。由于在2D单元中执行了以前的许多测试,该设置允许扩散引起的对流的3D测量。测试在高压下进行,其中CO 2处于高密度,类似于实际存储状况,并且通过测量自动保持恒压的泵来测量溶解的CO2。这允许在3D环境中进行速率测量。基本兴趣是确定对流制度中的溶解速率,但也通过该实验设置测定了水中CO 2的扩散系数。此外,估计了开始对流的开始时间。结果表明,在对流期间测量的溶出速率比通过数值模拟所获得的半经验相关性的速度快于预测一到两阶数。估计的开始时的对流时间短于理论预测。整体结果表明,扩散引起的对流扮演比以前假设的更重要的作用。

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