Editorial on Hydrology and Water Resources in Agriculture and Ecology
Author Contributions
Funding
Data Availability Statement
Conflicts of Interest
List of Contributions
- Deng, L.; Guo, Y.; Qi, Y.; Shen, Y.-J.; Shen, Y. Impacts of Climate Change and Human Activities on Streamflow of Upper Yongding River Basin, North China. Water 2022, 14, 2798. https://doi.org/10.3390/w14182798
- Jódar, J.; Martos-Rosillo, S.; Custodio, E.; Mateos, L.; Cabello, J.; Casas, J.; Salinas-Bonillo, M.J.; Martín-Civantos, J.M.; González-Ramón, A.; Zakaluk, T.; et al. The Recharge Channels of the Sierra Nevada Range (Spain) and the Peruvian Andes as Ancient Nature-Based Solutions for the Ecological Transition. Water 2022, 14, 3130. https://doi.org/10.3390/w14193130
- Duffková, R.; Poláková, L.; Lukas, V.; Fučík, P. The Effect of Controlled Tile Drainage on Growth and Grain Yield of Spring Barley as Detected by UAV Images, Yield Map and Soil Moisture Content. Remote Sens. 2022, 14, 4959. https://doi.org/10.3390/rs14194959
- Liu, C.; Chen, Y.; Fang, G.; Zhou, H.; Huang, W.; Liu, Y.; Wang, X.; Li, Z. Hydrological Connectivity Improves the Water-Related Environment in a Typical Arid Inland River Basin in Xinjiang, China. Remote Sens. 2022, 14, 4977. https://doi.org/10.3390/rs14194977
- Yin, J.; Xia, J.; Xia, Z.; Cai, W.; Liu, Z.; Xu, K.; Wang, Y.; Zhang, R.; Dong, X. Temporal Variation and Spatial Distribution in the Water Environment Helps Explain Seasonal Dynamics of Zooplankton in River-Type Reservoir. Sustainability 2022, 14, 13719. https://doi.org/10.3390/su142113719
- Harrison, R.; van Tol, J.; Amiotte Suchet, P. Hydropedological Characteristics of the Cathedral Peak Research Catchments. Hydrology 2022, 9, 189. https://doi.org/10.3390/hydrology9110189
- Yang, L.; Duan, J.; Peng, L.; Zhang, X.; Guo, X.; Yang, J. Effects of Straw Mulching on Near-Surface Hydrological Process and Soil Loss in Slope Farmland of Red Soil. Water 2022, 14, 3388. https://doi.org/10.3390/w14213388
- Idrees, M.; Ahmad, S.; Khan, M.W.; Dahri, Z.H.; Ahmad, K.; Azmat, M.; Rana, I.A. Estimation of Water Balance for Anticipated Land Use in the Potohar Plateau of the Indus Basin Using SWAT. Remote Sens. 2022, 14, 5421. https://doi.org/10.3390/rs14215421
- Cui, Y.; Tang, H.; Jin, J.; Zhou, Y.; Jiang, S.; Chen, M. System Structure–Based Drought Disaster Risk Assessment Using Remote Sensing and Field Experiment Data. Remote Sens. 2022, 14, 5700. https://doi.org/10.3390/rs14225700
- Janani, H.K.; Abeysiriwardana, H.D.; Rathnayake, U.; Sarukkalige, R. Water Footprint Assessment for Irrigated Paddy Cultivation in Walawe Irrigation Scheme, Sri Lanka. Hydrology 2022, 9, 210. https://doi.org/10.3390/hydrology9120210
- Panditharathne, R.; Gunathilake, M.B.; Chathuranika, I.M.; Rathnayake, U.; Babel, M.S.; Jha, M.K. Trends and Variabilities in Rainfall and Streamflow: A Case Study of the Nilwala River Basin in Sri Lanka. Hydrology 2023, 10, 8. https://doi.org/10.3390/hydrology10010008
- Ejaz, N.; Bahrawi, J.; Alghamdi, K.M.; Rahman, K.U.; Shang, S. Drought Monitoring Using Landsat Derived Indices and Google Earth Engine Platform: A Case Study from Al-Lith Watershed, Kingdom of Saudi Arabia. Remote Sens. 2023, 15, 984. https://doi.org/10.3390/rs15040984
- Liu, M.; Lv, S.; Qiao, Q.; Song, L. Design and Numerical Simulation of the Headworks in the Shizuishan Section of the Yellow River. Sustainability 2023, 15, 4564. https://doi.org/10.3390/su15054564
- Chen, H.; Meng, F.; Sa, C.; Luo, M.; Zhang, H.; Bao, S.; Liu, G.; Bao, Y. Synergistic Change and Driving Mechanisms of Hydrological Processes and Ecosystem Quality in a Typical Arid and Semi-Arid Inland River Basin, China. Remote Sens. 2023, 15, 1785. https://doi.org/10.3390/rs15071785
- Fang, J.; Wang, Y.; Jiang, P.; Ju, Q.; Zhou, C.; Lu, Y.; Gao, P.; Sun, B. Evaluation of Different Methods on the Estimation of the Daily Crop Coefficient of Winter Wheat. Water 2023, 15, 1395. https://doi.org/10.3390/w15071395
- Ribeiro Filho, J.C.; Andrade, E.M.d.; Guerreiro, M.S.; Palácio, H.A.d.Q.; Brasil, J.B. Soil–Water–Atmosphere Effects on Soil Crack Characteristics under Field Conditions in a Semiarid Climate. Hydrology 2023, 10, 83. https://doi.org/10.3390/hydrology10040083
- Pei, Z.; Wu, B. Spatial-Temporal Characteristics of Spring Maize Drought in Songnen Plain, Northeast China. Water 2023, 15, 1618. https://doi.org/10.3390/w15081618
- de Lima, J.A.; Tonello, K.C. Rainfall Partitioning in Amazon Forest: Implications of Reduced Impact Logging on Litter Water Conservation. Hydrology 2023, 10, 97. https://doi.org/10.3390/hydrology10040097
- Lyu, J.; Wang, X.; Hou, S.; Zeb, A.; Zhu, H.; Xu, Y. Content Variation and Potential Runoff Loss Risk of Nutrients in Surface Water of Saline-Alkali Paddy in Response to the Application of Different Nitrogen Fertilizer Types. Sustainability 2023, 15, 7040. https://doi.org/10.3390/su15097040
- Irizarry-Ortiz, M.; Harmsen, E.W. Sensitivity of the Penman–Monteith Reference Evapotranspiration Equation to Meteorological Variables for Puerto Rico. Hydrology 2023, 10, 101. https://doi.org/10.3390/hydrology10050101
- Wang, E.; Chen, J.; Liu, L.; Cui, L.; Xue, J.; Ren, J.; Du, Q. Effect of Soil Texture on Water and Salt Transport in Freeze–thaw Soil in the Shallow Groundwater Area. Water 2023, 15, 2587. https://doi.org/10.3390/w15142587
- Castagnolli, L.; Boggiani, F.S.; Lima, J.A.d.; Lima, M.T.; Tonello, K.C. Hydrological Properties of Litter in Different Vegetation Types: Implications for Ecosystem Functioning. Hydrology 2023, 10, 165. https://doi.org/10.3390/hydrology10080165
- de Melo, D.A.; Silva, P.C.; da Costa, A.R.; Delmond, J.G.; Ferreira, A.F.A.; de Souza, J.A.; de Oliveira-Júnior, J.F.; da Silva, J.L.B.; da Rosa Ferraz Jardim, A.M.; Giongo, P.R.; et al. Development and Automation of a Photovoltaic-Powered Soil Moisture Sensor for Water Management. Hydrology 2023, 10, 166. https://doi.org/10.3390/hydrology10080166
- Senay, G.B.; Kagone, S.; Parrish, G.E.L.; Khand, K.; Boiko, O.; Velpuri, N.M. Improvements and Evaluation of the Agro-Hydrologic VegET Model for Large-Area Water Budget Analysis and Drought Monitoring. Hydrology 2023, 10, 168. https://doi.org/10.3390/hydrology10080168
- Angelakis, A.N.; Passchier, C.W.; Valipour, M.; Krasilnikoff, J.A.; Tzanakakis, V.A.; Ahmed, A.T.; Baba, A.; Kumar, R.; Bilgic, E.; Capodaglio, A.G.; et al. Evolution of Tunneling Hydro-Technology: From Ancient Times to Present and Future. Hydrology 2023, 10, 190. https://doi.org/10.3390/hydrology10090190
- Ma, J.; Yang, J.; Hao, X.; Cui, B.; Yang, S. Dynamic Simulation Model of Channel Leakage Based on Multiple Regression. Sustainability 2023, 15, 14904. https://doi.org/10.3390/su152014904
- Xing, H.; Xie, Y.; Li, B.; Cong, H.; Zheng, W.; Liu, H. Water Footprint of Animal Breeding Industry and Driving Forces at Provincial Level in China. Water 2023, 15, 4264. https://doi.org/10.3390/w15244264
- Kiraga, S.; Peters, R.T.; Molaei, B.; Evett, S.R.; Marek, G. Reference Evapotranspiration Estimation Using Genetic Algorithm-Optimized Machine Learning Models and Standardized Penman–Monteith Equation in a Highly Advective Environment. Water 2024, 16, 12. https://doi.org/10.3390/w16010012
References
- United Nations. The United Nations World Water Development Report 2023: Partnerships and Cooperation for Water; UNESCO: Paris, France, 2023; pp. 12–13. [Google Scholar]
- Chen, S.; Mao, X.; Shang, S. Response and contribution of shallow groundwater to soil water/salt budget and crop growth in layered soils. Agric. Water Manag. 2022, 266, 107574. [Google Scholar] [CrossRef]
- Wen, Y.; Wan, H.; Shang, S. A monthly distributed water and salt balance model in irrigated and non-irrigated lands of arid irrigation district with shallow groundwater table. J. Hydrol. 2023, 616, 128811. [Google Scholar] [CrossRef]
- Li, J.; Shang, S.; Jiang, H.; Song, J.; Rahman, K.U.; Adeloye, A.J. Simulation-based optimization for spatiotemporal allocation of irrigation water in arid region. Agric. Water Manag. 2021, 254, 106952. [Google Scholar] [CrossRef]
No. | Journal | Research Field | Focus | Type of Study Area | County /Region |
---|---|---|---|---|---|
1 | Water | River hydrology | Impacts of climate change and human activities on streamflow | River Basin | China |
2 | Water | Groundwater | Recharge channels for sowing water in mountain aquifers | Mountain range | Spain |
3 | Remote Sensing | Drainage | Effect of controlled tile drainage on growth and yield of spring barley | Experimental fields | Czech |
4 | Remote Sensing | Environmental hydrology | Relationship between hydrological connectivity and water quality | River Basin | China |
5 | Sustainability | Ecohydrology | Relationship of zooplankton population growth and environmental factors | Reservoir | China |
6 | Hydrology | Hydropedology | Impact of hydropedological characteristics on streamflow in mountain catchments | Mountain catchments | South Africa |
7 | Water | Cropland hydrology | Effects of straw mulching on runoff and soil loss in slope farmland | Experimentalsoil tank | China |
8 | Remote Sensing | River hydrology | Impact of land use/cover changes on water balance components in plateau watersheds | River Basin | Pakistan |
9 | Remote Sensing | Drought assessment | Impact of drought on summer maize yield | Region | China |
10 | Hydrology | Crop water requirement | Water footprint assessment for irrigated paddy cultivation | Irrigation Scheme | Sri Lanka |
11 | Hydrology | River hydrology | Trends and variabilities in rainfall and streamflow | River Basin | Sri Lanka |
12 | Remote Sensing | Drought assessment | Remote sensing-based drought monitoring | River Basin | Kingdom of Saudi Arabia |
13 | Sustainability | Hydrodynamics | Selection of operation mode for irrigation canal headwork | River and canal section | China |
14 | Remote Sensing | Ecohydrology | Relationship between hydrological processes and ecological evolution | River Basin | China |
15 | Water | Crop water requirement | Estimation methods for daily crop coefficient of winter wheat | Lysimeter | China |
16 | Hydrology | Soil physics | Interaction of soil–water–atmosphere on soil crack characteristics | Experimental plot | Brazil |
17 | Water | Drought assessment | Drought assessment for spring maize | Region | China |
18 | Hydrology | Forest hydrology | Rainfall partitioning in Amazon Forest | Experimental plot | Brazil |
19 | Sustainability | Nutrient loss | Potential runoff loss risk of nutrients in surface water of saline–alkali paddy | Mesocosm | China |
20 | Hydrology | Crop water requirement | Sensitivity of reference evapotranspiration to meteorological variables | Island | USA |
21 | Water | Soil water | Water and salt transport in freeze–thaw soil | Lysimeter | China |
22 | Hydrology | Forest hydrology | Hydrological properties of litter in different vegetation types | Forest | Brazil |
23 | Hydrology | Soil water | Photovoltaic-powered soil moisture sensor | Cropland | Brazil |
24 | Hydrology | Water balance | Large-area water budget analysis and drought monitoring | Countries | USA & Horn of Africa |
25 | Hydrology | Groundwater | Evolution of tunneling hydro-technology | Globe | Globe |
26 | Sustainability | Channel leakage | Model for estimating channel leakage | Channel reach | China |
27 | Water | Water footprint | Water footprint of animal breeding industry | Country | China |
28 | Water | Reference evapotranspiration | Reference evapotranspiration estimation method | Lysimeter | USA |
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Shang, S.; Gabriel, H.F.; Zhang, Q. Editorial on Hydrology and Water Resources in Agriculture and Ecology. Remote Sens. 2024, 16, 238. https://doi.org/10.3390/rs16020238
Shang S, Gabriel HF, Zhang Q. Editorial on Hydrology and Water Resources in Agriculture and Ecology. Remote Sensing. 2024; 16(2):238. https://doi.org/10.3390/rs16020238
Chicago/Turabian StyleShang, Songhao, Hamza Farooq Gabriel, and Qianqian Zhang. 2024. "Editorial on Hydrology and Water Resources in Agriculture and Ecology" Remote Sensing 16, no. 2: 238. https://doi.org/10.3390/rs16020238
APA StyleShang, S., Gabriel, H. F., & Zhang, Q. (2024). Editorial on Hydrology and Water Resources in Agriculture and Ecology. Remote Sensing, 16(2), 238. https://doi.org/10.3390/rs16020238