David Lutz
Biographic Data
| ID | 3707736 |
|---|---|
| NAME | David Lutz |
| GIVEN NAMES | David |
| FAMILY NAME | Lutz |
| SIGNATURE | LUTZ D |
| VERIFIED | No |
| TOTAL WORKS | 3 |
| TOTAL CITATIONS | 2 |
| AUTHOR COUNT | 3 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2019 |
| LATEST PUBLICATION YEAR | 2024 |
| H-INDEX | 1 |
Comparing assumptions and applications of dynamic vegetation models used in the Arctic-Boreal zone of Alaska and Canada
Modeling Arctic-Boreal vegetation is a challenging but important task, since this highly dynamic ecosystem is undergoing rapid and substantial environmental change. In this work, we synthesized information on 18 dynamic vegetation models (DVMs) that can be used to project vegetation structure, composition, and function in North American Arctic-Boreal ecosystems. We reviewed the ecosystem properties and scaling assumptions these models make, revie…
Coupled human-natural system impacts of a winter weather whiplash event
In October 2011, the Halloween Nor’easter produced unusually early and heavy snowfall while leaves were still on the trees, causing extensive damage throughout the northeastern United States. This storm is an example of winter weather whiplash, in which an abrupt, back-and-forth swing in winter weather affects coupled human and natural systems. Research on the social-ecological drivers and impacts of winter weather whiplash is scarce because most…
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
Borsuk, M. E., G. Mavrommati, N. R. Samal, S. Zuidema, W. Wollheim, S. H. Rogers, A. M. Thorn, D. Lutz, M. Mineau, C. Grimm, C. P. Wake, R. Howarth, and K. Gardner. 2019. 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. Ecology and Society 24(2):11. https://doi.org/10.5751/ES-10806-240211
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
Borsuk, M. E., G. Mavrommati, N. R. Samal, S. Zuidema, W. Wollheim, S. H. Rogers, A. M. Thorn, D. Lutz, M. Mineau, C. Grimm, C. P. Wake, R. Howarth, and K. Gardner. 2019. 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. Ecology and Society 24(2):11. https://doi.org/10.5751/ES-10806-240211
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
Borsuk, M. E., G. Mavrommati, N. R. Samal, S. Zuidema, W. Wollheim, S. H. Rogers, A. M. Thorn, D. Lutz, M. Mineau, C. Grimm, C. P. Wake, R. Howarth, and K. Gardner. 2019. 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. Ecology and Society 24(2):11. https://doi.org/10.5751/ES-10806-240211
Coupled human-natural system impacts of a winter weather whiplash event
In October 2011, the Halloween Nor’easter produced unusually early and heavy snowfall while leaves were still on the trees, causing extensive damage throughout the northeastern United States. This storm is an example of winter weather whiplash, in which an abrupt, back-and-forth swing in winter weather affects coupled human and natural systems. Research on the social-ecological drivers and impacts of winter weather whiplash is scarce because most…
Comparing assumptions and applications of dynamic vegetation models used in the Arctic-Boreal zone of Alaska and Canada
Modeling Arctic-Boreal vegetation is a challenging but important task, since this highly dynamic ecosystem is undergoing rapid and substantial environmental change. In this work, we synthesized information on 18 dynamic vegetation models (DVMs) that can be used to project vegetation structure, composition, and function in North American Arctic-Boreal ecosystems. We reviewed the ecosystem properties and scaling assumptions these models make, revie…
Environmental Science (3 works) · Geography (3 works) · Climatology (2 works) · Ecology (2 works) · Tree-ring climate responses (2 works) · Archaeology (1 works) · Arctic (1 works) · Arctic vegetation (1 works) · Boreal (1 works) · Climate change (1 works)