1- Aali, F., & Vatankhah, A. R. (2023). Experimental study of simple flumes with trapezoidal contraction.
Flow Measurement and Instrumentation, 90, 102328. https://doi.org/10.1016/j.flowmeasinst.2023.102328
2- Breiman, L. (2001). Random forests. Machine learning, 45, 5-32.
3- Bhoria, S., Sihag, P., Singh, B., Ebtehaj, I., & Bonakdari, H. (2021). Evaluating Parshall flume aeration
with experimental observations and advance soft computing techniques. Neural Computing and Applications,
33, 17257-17271. https://doi.org/10.1007/s00521-021-06316-9
4- Chitrakar, S., Miller, S. N., Kempema, E. W., Caffrey, P. A., & Stern, J. (2018). Impact of Channel Slope
on Cutthroat Flume Performance. Transactions of the ASABE, 61(1), 117-120.
5- Critto, A., Carlon, C., & Marcomini, A. (2003). Characterization of contaminated soil and groundwater
surrounding an illegal landfill (S. Giuliano, Venice, Italy) by principal component analysis and kriging.
Environmental Pollution, 122(2), 235-244.
6- Galán-Martín, Á., Vaskan, P., Antón, A., Esteller, L. J., & Guillén-Gosálbez, G. (2017). Multi-objective
optimization of rainfed and irrigated agricultural areas considering production and environmental criteria: a
case study of wheat production in Spain. Journal of Cleaner Production, 140, 816-830.
7- Ivakhnenko, A. G. (1971). Polynomial theory of complex systems. IEEE transactions on Systems, Man,
and Cybernetics, (4), 364-378. https://doi.org/10.1109/TSMC.1971.4308320
8- MAATOOQ, J. S., & IBRAHEEM, M. J. (2023). CALIBRATION OF A NEW SIZE OF CUT-THROAT
FLUME FOR SUBMERGED FLOW CONDITION. Journal of Engineering Science and Technology, 18(1),
244-256.
9- Najafzadeh, M., & Mahmoudi-Rad, M. (2019). Estimation of the maximum scour depth at bridge pier
under effects of debris accumulations using NF-GMDH model and evolutionary algorithms. Environment
and Water Engineering, 5(3), 213-225. https://doi.org/10.22034/jewe.2019.192130.1326
10-Parsaie, A., Azamathulla, H. M., & Haghiabi, A. H. (2018). Prediction of discharge coefficient of
cylindrical weir–gate using GMDH-PSO. ISH Journal of Hydraulic Engineering, 24(2), 116-123.
https://doi.org/10.1080/09715010.2017.1372226
11-Ran, D., Wang, W., & Hu, X. (2018). Three-dimensional numerical simulation of flow in trapezoidal
cutthroat flumes based on FLOW-3D. Frontiers of Agricultural Science and Engineering, 5(2), 168-176.
12-Roushangar, K., Saghebian, S. M., & Mouaze, D. (2017). Predicting characteristics of dune bedforms
using PSO-LSSVM. International Journal of Sediment Research, 32(4), 515-526.
https://doi.org/10.1016/j.ijsrc.2017.09.005
13-Saran, D., & Tiwari, N. K. (2020). Generation of a Versatile Discharge Formula for Multiple Parshall
Flumes Using a Regression Technique. In International Conference on Energy, Materials Sciences &
Mechanical Engineering (pp. 1197-1207). Singapore: Springer Nature Singapore.
14-Sangeeta, Haji Seyed Asadollah, S. B., Sharafati, A., Sihag, P., Al-Ansari, N., & Chau, K. W. (2021).
Machine learning model development for predicting aeration efficiency through Parshall flume. Engineering
Applications of Computational Fluid Mechanics, 15(1), 889-901.
https://doi.org/10.1080/19942060.2021.1922314
15-siasar, H., & honar, T. (2019). Application of Support vector machine, CHAID and Random forest
models, in estimated daily Reference evapotranspiration in northern Sistan and Baluchestan province. Iranian
Journal of Irrigation & Drainage, 13(2), 378-388.
16-Skogerboe, G. V., & Hyatt, M. L. (1967). Rectangular cutthroat flow measurement Flumes. Journal of
the Irrigation and Drainage Division, 93(4), 1-14. https://doi.org/10.1061/JRCEA4.0000524
17-Taylor, K. E. (2001). Summarizing multiple aspects of model performance in a single diagram. Journal of
Geophysical Research: Atmospheres, 106(D7), 7183-7192
18-Tekade, S. A., Vasudeo, A. D., Ghare, A. D., & Ingle, R. N. (2016). Measurement of flow in supercritical
flow regime using cutthroat flumes. Sadhana, 41, 265-272.
19-Valipour, M. (2013). Increasing irrigation efficiency by management strategies: cutback and surge
irrigation. ARPN Journal of Agricultural and Biological Science, 8(1), 35-43.
20-Wang, C.D. (2005). Water measurement technique and measure. Beijing: Water and Power Press.
21-Willeitner, R. P., Barfuss, S. L., & Johnson, M. C. (2012). Montana flume flow corrections under
submerged flow. Journal of irrigation and drainage engineering, 138(7), 685-689.
https://doi.org/10.1061/(ASCE)IR.1943-4774.0000434
22-Yarahmadi, N., & Vatankhah, A. R. (2021). Experimental study on rectangular cut-throated flume:
Effects of flume walls slopes and channel longitudinal slope. Flow Measurement and Instrumentation, 79,
101919. https://doi.org/10.1016/j.flowmeasinst.2021.101919