課程資訊
課程名稱
地下水流汙染傳輸
Groundwater Flow and Transport 
開課學期
110-2 
授課對象
生物環境系統工程學研究所  
授課教師
王昱力 
課號
BSE5189 
課程識別碼
602 U0040 
班次
01 
學分
3.0 
全/半年
半年 
必/選修
選修 
上課時間
星期二6,7(13:20~15:10)星期四7(14:20~15:10) 
上課地點
生工202生工202 
備註
總人數上限:30人 
Ceiba 課程網頁
http://ceiba.ntu.edu.tw/1102BSE5189_01 
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課程概述

Movements of groundwater and transport in the subsurface are responsible for a variety of environmental, engineering, and geological processes of importance. This course targets students from various disciplines (geosciences, environmental engineering, agricultural engineering, civil engineering, chemical engineering, and applied mathematics) that work with physical and chemical processes in natural subsurface. The course will introduce the fundamental concepts that are important in understanding subsurface (reactive) transport processes, as well as their quantitative representation and application. Covered topics include, for example, effects of dispersion, transformation reactions, porous-media heterogeneity on transport, aqueous (dissolved) and multiphase (immiscible liquid, gas) systems, and interphase mass transfer. Depending on the students’ interests, the course will discuss the applications of the principles in understanding and quantifying chemical weathering processes, environmental (bio)remediation, geological carbon sequestration, and reservoir souring. 

課程目標
Learning Outcomes:
After completing this course, students should demonstrate the ability to:
1. Have a good command of the vocabulary (nomenclature) used in the literature to describe solute transport through subsurface systems.
2. Mathematically describe physical and chemical processes contributing to the overall transport and fate of solutes through porous media (e.g., mechanical-mixing phenomena, advective and dispersive/diffusive, heterogeneity). How these factors affect (reactive) transport processes?
3. Recognize factors contributing to nonideal solute transport through porous media while describing ideal solute transport at various scales of interest (i.e., micro-, lab-, and field-scale).
4. Construct models and make prediction of flow and transport from 1 to 3 dimensions, for both steady-state and transient problems.
5. Develop the ability to communicate and collaborate within interdisciplinary teams.
 
課程要求
The emphasis of the course is placed on the homework problems and projects due to the time-consuming nature of these assignments. The final grades will be given based on your homework, labs, and term project (or exams).  
預期每週課後學習時數
 
Office Hours
 
指定閱讀
1 02/15 Orientation
02/17 Lumped parameter model for aquifer systems
2 02/22 Flow through saturated porous media.
Solute transport through saturated porous media.
02/24 Diffusion and advection-diffusion processes (Brownian motion, random walk analysis)
3 03/01 Diffusion and advection-diffusion processes (diffusion equation and its analytical solutions)
03/03 Diffusion and advection-diffusion processes (advection-diffusion equation and its analytical solutions)
4 03/08 Concept of dispersion
Analysis of shear flow dispersion, mechanical mixing
03/10 Non-Fickian transport behavior (dead-end pore model, dual porosity model, fracture media)
5 03/15 Dispersion parameter estimation (1-D model, temporal moments)
03/17 Dispersion parameter estimation (1-D model, temporal moments)
6 03/22 Flow and transport in 2D/3D heterogeneous porous media (software)
03/24 Flow and transport in 2D/3D heterogeneous porous media (software)
7 03/29 Unsaturated fluid and solute movements (Infiltration of fertilizer)
03/31 Reactive transport (sorption, retardation)
8 04/05 Qingming festival
04/07 Reactive transport (nonlinear sorption, rate limited sorption)
9 04/12 Midterm
04/14 Midterm
10 04/19 Transformation reaction (biodegradation, abiotic transformation, radioactive decay, mineral dissolution, precipitation)
04/21 Field scale transport (identify factors responsible for nonideal transport and make prediction)
11 04/26 Field scale transport (identify factors responsible for nonideal transport and make prediction)
04/28 Flow of gas in porous media (e.g., volatile compounds, NAPL, natural gas)
12 05/03 Flow of gas in porous media (e.g., volatile compounds, NAPL, natural gas)
05/05 Flow of immiscible liquids in porous media (LNAPL, DNAPL, dissolution)
13 05/10 Flow of immiscible liquids in porous media (LNAPL, DNAPL, dissolution)
05/12 Transport, tracers, isotopes, and time
14 05/17 Modeling of gas flow, NAPL, multiphase flow, and isotope
05/19 PFAS/PFOA
15 05/24 Heat transport
05/26 Final project presentation
16 05/31 Final project presentation
 
參考書目
待補 
評量方式
(僅供參考)
   
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