A coupled terrestrial and aquatic biogeophysical model of the Upper Merrimack River watershed, New Hampshire, to inform ecosystem services evaluation and management under climate and land-cover change
Datos Bibliográficos
Samal, N. R., W. Wollheim, S. Zuidema, R. Stewart, Z. Zhou, M. M. Mineau, M. Borsuk, K. H. Gardner, S. Glidden, T. Huang, D. Lutz, G. Mavrommati, A. M. Thorn, C. P. Wake, and M. Huber. 2017. A coupled terrestrial and aquatic biogeophysical model of the Upper Merrimack River watershed, New Hampshire, to inform ecosystem services evaluation and management under climate and land-cover change. Ecology and Society 22(4):18. https://doi.org/10.5751/ES-09662-220418
Aquatic ecosystem · Biology · Climate change · Ecosystem · Ecosystem Management · Ecosystem services · Environmental resource management · Geography · Land cover · Land management · Land use · Land use, land-use change and forestry · Terrestrial ecosystem · Water resource management · Watershed · Watershed Management · Climate change and permafrost · Environmental Science · Peatlands and Wetlands Ecology · Rangeland and Wildlife Management · Ecology · Geology
Deliberative multiattribute valuation of ecosystem services across a range of regional land-use, socioeconomic, and climate scenarios for the upper Merrimack River watershed, New Hampshire, USA
Comparing group deliberation to other forms of preference aggregation in valuing ecosystem services
Snowmelt control on spring hydrology declines as the vernal window lengthens
Spatially explicit residential and working population assumptions for projecting and assessing natural capital and ecosystem services in Japan
Representing future generations in the deliberative valuation of ecosystem services
| Obras citantes distintas | 5 |
|---|---|
| Citas por año | 0,56 |
| Intervalo de citas | 2017 - 2020 (4) |
| Velocidad de citación | historical |
| Altamente citado | No |
| Tipos de cita | Neutras: 3 |