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Joint Impact of Scaling and Hysteresis on NAPL Flow Simulation
Authors:Hung-Hui Chen  Liang-Cheng Chang  Hsin-Yu Shan  Jui-Pin Tsai
Institution:(1) Department of Civil Engineering, Min Hsin University Science Technology, Hsinchu, Taiwan;(2) Department of Civil Engineering, National Chiao Tung University, Hsinchu, Taiwan
Abstract:The hysteresis of capillary pressure versus saturation (PS) relation is an important constitutive relation in multiphase flow, since the PS relation is widely used to predict PS relations in the simulation of the non-aqueous phase liquids (NAPLs). This work examined the performance of the scaling rule on predicting the PS relationship and then studied the joint impact of the scaling and hysteresis on the multiphase NAPL flow simulation. Various experimental PS values of distinct fluid pairs were compared with the scaled PS curves using the scaling rule. The comparison indicated that the prediction of PS is more accurate when the water–air PS curve is used to scale other PS curves. The joint impact of the scaling and hysteresis on the NAPLs flow simulation was then investigated by numerical simulation studies. The NAPL simulator was used to simulate the outcome of several scenarios based on a system with water–NAPL–air in a hypothetical sand tank. For both gasoline and trichloroethylene, the difference of the injected NAPL volume between no hysteretic and hysteretic simulations over a given time period was the smallest when the water–air PS curve was used to scale other P–S curves. Simulation results of this study are valuable references for predicting the distribution of NAPLs.
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