VICTOR M. PONCE
CONTRIBUTIONS TO THE HYDRAULIC ENGINEERING LITERATURE:
• 1977-2023 •
TOPICAL
|
No. |
Online article |
Field |
Year publ. |
1 |
Shallow wave propagation in open channel flow |
Hydromechanics |
1977 |
2 |
Applicability of kinematic and diffusion models |
Hydromechanics |
1978 |
4 |
Kinematic shock: Sensitivity analisis |
Hydromechanics |
1985 |
6 |
New perspective on the Vedernikov number |
Hydromechanics |
1991 |
7 |
The kinematic wave controversy |
Hydromechanics |
1991 |
38 |
A dimensionless convection-diffusion-dispersion equation of flood waves |
Hydromechanics |
2020 |
57 |
The S-curve explained |
Hydromechanics |
2019 |
40 |
Effect of cross-sectional shape on free-surface channel instability |
Hydromechanics, channel design |
2022 |
77 |
What is the relative depth to achieve maximum discharge in a circular culvert? |
Open-channel hydraulics |
2015 |
17 |
Gradually varied flow profiles using critical slope and online calculators |
Open-channel hydraulics |
2013 |
20 |
The inherently stable channel with online computation |
Open-channel design |
2016 |
78 |
Design of channel transitions |
Channel design |
2015 |
59 |
The ford-bridge: Sustainable river crossings in arid regions |
Bridge design |
2020 |
19 |
Muskingum-Cunge amplitude and phase portraits with online computation |
Computational hydraulics |
2016 |
21 |
Convergence of four-point implicit water wave models
|
Computational hydraulics |
1978 |
22 |
Modeling circulation in depth-averaged flow
|
Computational hydraulics |
1981 |
47 |
[When to use] Unsteady flow with HEC-RAS |
Hydraulic computational modeling |
2011 |
37 |
Froude number for initiation of motion calculated online |
River mechanics |
2018 |
35 |
The Lane relation revisited, with online calculation |
Sedimentation engineering |
2015 |
49 |
Effect of form friction on the sediment rating curve |
Sedimentation engineering |
2012 |
50 |
Critical shear stress vs critical velocity |
Sedimentation engineering |
2014 |
51 |
Time engineering: The singular case of the Salton basin |
Fluvial geomorphology |
2015 |
65 |
The natural function of rivers |
Potamology |
2008 |
No. |
Online article |
Field |
Year publ. |
3 |
Muskingum-Cunge method with variable parameters |
Flood hydrology |
1978 |
42 |
Q&A on the return period to be used for design |
Flood hydrology |
2008 |
80 |
Muskingum-Cunge method explained |
Flood hydrology |
2021 |
9 |
Analytical verification of Muskingum-Cunge routing |
Flood routing |
1996 |
30 |
Dam-breach flood wave propagation using dimensionless parameters
|
Flood hydrology and hydraulics |
2003 |
34 |
Runoff diffusion reexamined |
Flood hydrology and hydraulics |
2014 |
27 |
Management of droughts and floods in the semiarid Brazilian Northeast: The case for conservation
|
Flood and drought hydrology |
1995 |
75 |
The Pfafstetter Coding System for Watershed Identification |
Catchment/watershed/basin hydrology |
2015 |
39 |
Comparison between kinematic and dynamic hydraulic diffusivities using script ONLINEOVERLAND |
Hydrologic numerical modeling |
2022 |
12 |
A general dimensionless unit hydrograph |
Surface-water hydrology |
2009 |
13 |
Cascade and convolution: One and the same |
Surface-water hydrology |
2009 |
31 |
Water balance using catchment wetting |
Surface-water hydrology |
2012 |
25 |
A conceptual model of catchment water balance: 1. Formulation and calibration
|
Surface-water hydrology |
1995 |
26 |
A conceptual model of catchment water balance: 2. Application to runoff and baseflow
modeling
|
Surface-water hydrology |
1995 |
32 |
Comparison of two types of Clark unit hydrographs |
Surface-water hydrology |
2013 |
56 |
Why is the cybernetic hydrologic balance
better suited for yield hydrology than the conventional approach? |
Surface-water hydrology |
2018 |
73 |
Synthetic unit hydrographs explained |
Surface-water hydrology |
2013 |
5 |
Diffusion wave modeling of catchment dynamics |
Surface-water hydrologic modeling |
1986 |
No. |
Online article |
Field |
Year publ. |
33 |
The Penman-Monteith method |
Evaporation and Evapotranspiration |
2014 |
8 |
Runoff curve number: Has it reached maturity? |
Infiltration modeling |
1996 |
76 |
Initial abstraction revisited |
Infiltration modeling |
2015 |
10 |
Surface albedo and water resources:
Hydroclimatological impact of human activities |
Hydroclimatology |
1997 |
11 |
Hydrologic and Environmental Impact of the Parana-Paraguay Waterway on the
Pantanal of Mato Grosso, Brazil |
Hydro-environmental science and engineering |
1995 |
18 |
The right of Nature to dispose of its salt waste |
Environmental science |
2015 |
15 |
Differential equation for DO sag curve |
Environmental engineering |
2011 |
14 |
Nutrient balance under flood pulse |
Ecohydrology |
2009 |
16 |
The 800-mm isohyet: Health and hope |
Ecohydrology |
2012 |
24 |
Vegetated earthmounds in tropical savannas of Central Brazil: A synthesis
|
Ecohydrology |
1993 |
60 |
Andes, Hylean, and Craton: The faces of the rivers |
Ecohydrology |
2020 |
54 |
The Linear Oasis: Ecohydrology of Red Shank, Tierra
del Sol, San Diego County, California |
Ecohydrology |
2017 |
79 |
Will the Amazon rainforest help in taking up excess carbon from the air? |
Rainforest ecology |
2020 |
23 |
Management of baseflow augmentation: A review |
Baseflow hydrology and hydraulics |
1990 |
29 |
Characterization of drought across climatic spectrum
|
Drought hydrology |
2000 |
28 |
Groundwater recharge by channel infiltration
in El Barbon basin, Baja California, Mexico
|
Groundwater hydrology |
1999 |
No. |
Online article |
Field |
Year publ. |
36 |
How much water could be pumped
from an aquifer and still remain sustainable? |
Sustainability of groundwater |
2018 |
41 |
Sustainable yield of groundwater |
Sustainability of groundwater |
2007 |
45 |
The facts about groundwater sustainability |
Sustainability of groundwater |
2009 |
68 |
Who owns the groundwater? -- The relation between
groundwater and surface water |
Sustainability of groundwater |
2010 |
55 |
The choice between groundwater use and ecosystem preservation |
Sustainability of groundwater, ecohydrology |
2018 |
43 |
Hydrologic and environmental impact of the irrigations
of La Joya and San Isidro-La Cano on the Vitor valley, Arequipa, Peru |
Sustainable agriculture |
2008 |
62 |
The Salton Sea: An Assessment |
Sustainability of irrigated agriculture |
2005 |
67 |
The price to pay for agricultural sustainability |
Sustainability of irrigated agriculture |
2008 |
70 |
The price to pay for sequestering all runoff |
Sustainability of irrigated agriculture |
2011 |
44 |
Sustainable runoff for basin salt balance |
Salinity management |
2009 |
46 |
The facts about river basin salinity |
Salinity management |
2010 |
64 |
The salt predicament |
Salinity management in irrigated agriculture |
2008 |
48 |
The salinity of groundwaters |
Groundwater salinity |
2012 |
52 |
Effect of global climate change on the White Range of Peru |
Glacier hydrology |
2015 |
53 |
The myth of groundwater resource evaluation |
Groundwater modeling |
2016 |
72 |
Regional aquifer parameters using baseflow recession |
Hydrogeology |
2013 |
63 |
Is vegetation paying its own way? |
Physical hydrology |
2008 |
58 |
The properties of water |
Water science |
2019 |
61 |
Facts on Lake Titicaca, Peru and Bolivia |
Lake hydrology |
2003 |
74 |
Chow, Froude, and Vedernikov |
History of hydraulics |
2014 |
66 |
The resource dilemma: The settlement of less-than-optimal lands |
Land-use policy |
2008 |
71 |
The science of global warming: Good, bad, or ugly? |
Global climate change |
2011 |
69 |
Hardin's "Tragedy of the Commons" revisited |
Global economics |
2010 |
No. |
Online article |
Field |
Year publ. |