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Brian Orland,김상범,H. Campbell,Eleanor R. Stuckeman 전북대학교 부설 휴양및경관계획연구소 2011 휴양및경관연구 Vol.5 No.1
The rural landscape is as much a representation of culture as it is of natural landscape and landscape processes. Very little of the developed world includes truly natural landscape and typically the long-populated regions of Europe and Asia have only pockets of natural landscape. The oldest pictorial; representations of the landscape bear witness to an enduring set of values people hold for the land as an aesthetic resource as well as economic and production values. Until recent years, in many regions of the world the a agrarian productivity of the land was probably the majority concern and other values as aesthetic, recreational or restorative resources were regarded as secondary. Now, however, with more than 50% of the world population living in sprawling urban centers it is becoming evident that the values we see in the rural landscape are threatened and fragile. In this same time the mechanisms we use to direct or control development or change in the public domain have become increasingly evidence-based. Establishing a protection zone or guidelines favoring one kind of use over another leans heavily on assessments of ecosystem services such as economic and ecological productivity and sustainability. While these assessments lend themselves to consideration of the computed effects of impacts such as climate change or resource extraction, they do not capture cultural or psychological attachment to the spirit of “place” in the landscape, and yet it is that attachment to place that most frequently becomes an impediment to systematic planning.
Inverse Problems in Aerodynamics, Heat Transfer, Elasticity and Materials Design
George S. Dulikravich,Brian H. Dennis,Daniel P. Baker,Stephen R. Kennon,Helcio R. B. Orlande,Marcelo J. Colaco 한국항공우주학회 2012 International Journal of Aeronautical and Space Sc Vol.13 No.4
A number of existing and emerging concepts for formulating solution algorithms applicable to multidisciplinary inverse problems involving aerodynamics, heat conduction, elasticity, and material properties of arbitrary three-dimensional objects are briefly surveyed. Certain unique features of these algorithms and their advantages are sketched for use with boundary element and finite element methods.


Inverse Problems in Aerodynamics, Heat Transfer, Elasticity and Materials Design
Dulikravich, George S.,Dennis, Brian H.,Baker, Daniel P.,Kennon, Stephen R.,Orlande, Helcio R.B.,Colaco, Marcelo J. The Korean Society for Aeronautical and Space Scie 2012 International Journal of Aeronautical and Space Sc Vol.13 No.4
A number of existing and emerging concepts for formulating solution algorithms applicable to multidisciplinary inverse problems involving aerodynamics, heat conduction, elasticity, and material properties of arbitrary three-dimensional objects are briefly surveyed. Certain unique features of these algorithms and their advantages are sketched for use with boundary element and finite element methods.