References
- H. Chansheng, F. Bojie, C. Liding, Management and control
of non-point source pollution, Environ. Sci., 5 (1998) 88–92, 97
(in Chinese).
- O. Wei, L. Yingchun, L. Siwen, L. Hongbin, W. Yidi, Analysis on
the development
trend of non-point source pollution research
in recent 30 years, J. Agro-Environ. Sci., 37 (2018) 150–157
(in Chinese).
- Y. Xuhua, Z. Liang, C. Lin, W. Xinming, F. Changfeng,
Z. Yuehua, Q. Yunpeng, T. Xiangjun, Application of ArcGIS
in spatial analysis of water source pollution intensity, J. Hohai
Univ. (Nat. Sci. Ed.), 46 (2018) 23–29 (in Chinese).
- H. Gairui, L. Jiake, L. Huaien, L. Kangbin, Y. Liu, Research
progress of non-point source pollution models and uncertainty
analysis methods in watershed, J. Hydroelectric Eng., 12 (2018)
54–64 (in Chinese).
- J.G. Arnold, J.R. Williams, A.D. Nicks, N.B. Sammons, SWRRB;
A Basin Scale Simulation Model for Soil and Water Resources
Management, Texas A&M University Press, College Station,
Texas, 1990.
- A. Saleh, J.G. Arnold, P.W. Gassman, L.M. Hauck, W.D. Rosenthal,
J.R. Williams, A.M.S. McFarland, Application of SWAT
for the upper North Bosque River watershed, Trans. ASAE,
43 (2000) 1077–1087.
- M.K. Shrestha, F. Recknagel, J. Frizenschaf, W. Meyer, Assessing
SWAT models based on single and multi-site calibration for
the simulation of flow and nutrient loads in the semi-arid
Onkaparinga catchment in South Australia, Agric. Water
Manage., 175 (2016) 61–71.
- A.O. Dakhlalla, P.B. Parajuli, Assessing model parameters sensitivity
and uncertainty of streamflow, sediment, and nutrient
transport using SWAT, Inf. Process. Agric., 6 (2019) 61–72.
- L. Wang, Research on Non-point Source Pollution of Heihe
Reservoir Based on SWAT Model, Xi’an University of Technology,
China, 2015 (in Chinese).
- L. Shasha, S. Lianqiang, Review on the development of water
quality modeling, Environ. Eng., 34 (2016) 78–81 (in Chinese).
- M.S. Khattak, F. Anwar, T.U. Saeed, Floodplain mapping using
HEC-RAS and Arc GIS: a case study of Kabul River, Arabian J.
Sci. Eng., 4 (2016) 1375–1390.
- L. Li, Z. Yi, C. Yuxiang, Analysis of flood calculation results
of MIKE 11 and HEC-RAS hydrodynamic model, Zhejiang
Water Resour. Sci. Technol., 47 (2019) 17–20 (in Chinese).
- C. Xuedong, Q. Yong, Z. Weixia, K. Luzhi, L. Yunchun,
Numerical simulation of mountain natural river surface based
on HEC-RAS and MIKE 11, People’s Pearl River, 35 (2014)
116–118 (in Chinese).
- I. Mondal, J. Bandyopadhyay, A.Kr. Paul, Estimation of
hydrodynamic pattern change of Ichamati River using HEC
RAS model, West Bengal, India, Model. Earth Syst. Environ.,
2 (2016) 1–13.
- R. Kasperek, M. Mokwa, M.J. Wiatkowski, Modeling of pollution
transport with sediment on the example of the Widawa River,
Arch. Environ. Prot., 2 (2013) 29–43.
- T.A. Wool, J.L. Martin, R.W. Schottman, The linked watershed/
waterbody model (LWWM): a watershed management
modelling system, Lake Reservoir Manage., 9 (1994) 124.
- M. Kelly, R. Giovannelli, Linked Watershed/Water-Body Model,
1epa Seminar Publication, 1995, pp. 202–212.
- M.O. Walters, H. Thomas, Application of a Linked Watershed
Water Body Model to Kingston Harbour in Jamaica, IAHS
Publication (International Association of Hydrological
Sciences), 1998, pp. 137–146.
- L. Dan, X. Lianqing, H. Zhenchun, Impact analysis of watershed
non-point source pollution simulation based on SWAT model,
Environ. Pollut. Control, 3 (2008) 4–7 (in Chinese).
- M.D. McKay, R.J. Beckman, W.J. Conover, A comparison of
three methods for selecting values of input variables in the
analysis of output from a computer code, Technometrics,
21 (1979) 239–245.
- M.D. Morris, Factorial sampling plans for preliminary
computational experiments, Technometrics, 33 (1991) 161–174.
- Z. Jiaqi, X. Xiangyang, H. Shuang, Parameter sensitivity
analysis of SWMM model based on LH-OAT, China Rural
Water Hydropower, 3 (2014) 84–87 (in Chinese).
- X. Fang, Q. Wang, J.C. Wang, X.Y. Xiang, Y.F. Wu, Y.F. Zhnag,
Employing extreme value theory to establish nutrient criteria
in bay waters: a case study of Xiangshan Bay, J. Hydrol.,
603 (2021) 127146, doi:10.1016/j.jhydrol.2021.127146.
- L. Hui, J. Sheng, L. Xiaoyun, Z. Lianyong, Z. Xiang, Sensitivity
analysis of SWAT model parameters and importance of
automatic calibration Take runoff simulation of Manas River
as an example, J. Water Resour. Water Eng., 21 (2010) 79–82
(in Chinese).