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Marine renewable energy deployment involves site resource assessment as strategic support for installation and optimization.
This discrepancy highlights the importance of conducting site resource assessments based on measurements at the tidal energy converter device scale.
The selection of trees for removal on this occasion was based on tree form, as well as ensuring the even distribution of remaining trees so as to allow for optimum site resource utilisation.
The aim of this study was to provide a single site resource for investigators, clinicians, and others seeking preclinical, animal, and human investigational studies concerning the postsurgical, anti-adhesion barrier Seprafilm™ (Genzyme Corporation, Cambridge, MA).
This study demonstrates a site resource assessment to examine the temporal variation of the current speeds, current directions, turbulence intensities, and power densities for a tidal energy site in the East River tidal strait.
The main goal of this project was to determine if the initial enhancement of photosynthesis by eCO2 was sustained through time, and if responses were linked to the progressive decline in site resource availability (Garten et al. 2011), foliar N content (Norby et al. 2010) and shift in internal plant C allocation (Norby et al. 2004).
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The similarity of basal area growth and difference in diameter growth gives good management flexibility as all treatments at all sites were fully utilising site resources.
Results suggest that pre-commercial thinning of 9 13-year-old stands to 1000 stems ha−1 would improve growth of individual trees without seriously under-utilising site resources.
Even though all slash treatment alternatives increased the cover and biomass of native grasses, scattering slash across the site to serve as a mulch appears most beneficial to improving plant species diversity and conserving site resources.
Under any of these circumstances, a crop response to under-canopy vegetation control could be expected as the crop and under-canopy vegetation are competing for the same, limited site resources.
Other vegetation growing together with planted 'crop' trees can reduce growth by utilising site resources (water, light and nutrients) that would otherwise be available for tree growth (Richardson, 1996; Little and Rolando, 2001).
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