This study applied grassland related multi-index and assessed the effects of climate change by investigating grassland responses to drought. This process was performed to study grassland vegetation dynamic accurately and evaluate the effect of drought in the Mongolian Plateau (MP). The spatial–temporal characteristics of grassland dynamic in terms of coverage (Fv), surface bareness (Fb), and net primary production (NPP) from 2000 to 2013 were explored. We implemented the maximum Pearson correlation to analyze the grassland vegetation in response to drought by using self-calibrating Palmer Drought Severity Index (scPDSI). Results show that Fv and NPP present an increasing trend (0.18 vs. 0.43). Fb showed a decreasing trend with a value of −0...
Changes in land management and climate alter vegetation dynamics, but the determinants of vegetation...
Naturally growing vegetation often suffers from the effects of drought. There exists a vast number o...
<p><strong>Figure 6.</strong> Area averaged means of June–July–August EVI plotted with the proportio...
Grassland, as the primary vegetation on the Qinghai-Tibet Plateau, has been increasingly influenced ...
Abstract Drought has a great impact on global terrestrial ecosystems. A large number of studies have...
Global change in recent decades has caused severe degradation of grassland ecosystems in arid and se...
In Mongolia, drought is a major natural disaster that can influence and devastate large regions, red...
The focus of this paper is on the grassland productivity response to drought under the background of...
The Qinghai-Tibetan Plateau (QTP) is a global center of cold and dry, where the most extensive fragi...
Climate change is projected to increase the aridity of semi-arid ecosystems, including Mongolian gra...
Vegetation net primary productivity (NPP) is an important aspect of the global carbon cycle, and its...
Drought monitoring is challenging, but it is required for improving agricultural production, protect...
Drought has devastating impacts on agriculture and other ecosystems, and its occurrence is expected ...
The 4D disasters (desertification, drought, dust, and dzud, a Mongolian term for severe winter weath...
Soil moisture (SM) plays a paramount role in maintaining plant growth. However, the understanding of...
Changes in land management and climate alter vegetation dynamics, but the determinants of vegetation...
Naturally growing vegetation often suffers from the effects of drought. There exists a vast number o...
<p><strong>Figure 6.</strong> Area averaged means of June–July–August EVI plotted with the proportio...
Grassland, as the primary vegetation on the Qinghai-Tibet Plateau, has been increasingly influenced ...
Abstract Drought has a great impact on global terrestrial ecosystems. A large number of studies have...
Global change in recent decades has caused severe degradation of grassland ecosystems in arid and se...
In Mongolia, drought is a major natural disaster that can influence and devastate large regions, red...
The focus of this paper is on the grassland productivity response to drought under the background of...
The Qinghai-Tibetan Plateau (QTP) is a global center of cold and dry, where the most extensive fragi...
Climate change is projected to increase the aridity of semi-arid ecosystems, including Mongolian gra...
Vegetation net primary productivity (NPP) is an important aspect of the global carbon cycle, and its...
Drought monitoring is challenging, but it is required for improving agricultural production, protect...
Drought has devastating impacts on agriculture and other ecosystems, and its occurrence is expected ...
The 4D disasters (desertification, drought, dust, and dzud, a Mongolian term for severe winter weath...
Soil moisture (SM) plays a paramount role in maintaining plant growth. However, the understanding of...
Changes in land management and climate alter vegetation dynamics, but the determinants of vegetation...
Naturally growing vegetation often suffers from the effects of drought. There exists a vast number o...
<p><strong>Figure 6.</strong> Area averaged means of June–July–August EVI plotted with the proportio...