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result(s) for
"Petschek, Peter"
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Integration of Building Information Modeling and Stormwater Runoff Modeling: Enhancing Design Tools for Nature-Based Solutions in Sustainable Landscapes
by
Suwanarit, Asan
,
Aung, Aye P. P.
,
Irvine, Kim N.
in
Architects
,
Building information modeling
,
Case studies
2024
Building information modeling (BIM) has been used by the architectural and engineering disciplines to streamline the building design, construction, and management process, but there has been much more limited experience in extending the application to landscape design and implementation. This study integrated BIM software (Autodesk InfraWorks 2024.1) with a dynamic, process-oriented, conceptual hydrologic/hydraulic model (PCSWMM 2023, version 7.6.3665) to enhance the analytical tools for sustainable landscape design. We illustrate the model integration through a case study that links an existing nature-based solution (NbS) development, the PTT Metro Forest Park, Bangkok, Thailand, with theoretical new-build NbS for an adjacent property. A BIM school building was virtually situated on an empty lot beside the Metro Forest Park and seven NbS scenarios were run with design storms having 2-year, 5-year, and 100-year return intervals. The combination of a rain garden, permeable pavement, a retention pond, and a green roof was effective in sustainably managing runoff from the theoretical new-build site discharging to the Metro Forest. NbS design characteristics such as rain garden substrate depth and green roof area were optimized using the hydrologic/hydraulic model. Model results showed that even with the 100-year rainfall event, the existing Metro Forest pond storage capacity was sufficient so that flooding on the property would not occur. The consideration of connectivity between NbS features is facilitated by the modeling approach, which is important for NbS planning and assessment at a regional scale.
Journal Article
Grading for Landscape Architects and Architects
2012,2008
\"The contour line is the only precise and accurate means for representing the free and natural formation of terrain in the plan; so learn to use this instrument!\" Professor Hans Loidl, Landscape Architect and Teacher The two design elements of landscape architecture are plants and terrain. While the subject of vegetation is well documented by numerous publications, there is a lack of technical literature in the field of grading. This volume fills that gap: History, forms of terrain, basic principles, digital modeling, slope reinforcement systems, construction site implementation, and practical examples - all are treated in detail by the author. Short problems, systematically organized and arranged in increasing order of difficulty, enable the reader to apply what he or she has learned. The exercises are suitable for self-study. Together with the large amount of practical information provided by the book, they also enable architects to become familiar with grading as an important design element of landscape architecture.
Grading for landscape architects and architects
2014
Grading is one the most important aspects involved in landscape architecture, and, together with planting and vegetation, the most important tool in designing landscape. Landscape architects must be able to design using contour lines, as well as rapidly develop alternatives and consider options regarding design, ecology, economy, and technology. Knowledge of grading is an indispensable prerequisite.The book explains the basic aspects of grading such as land forms, scales, interpolation, elevation points, contour lines, earth mass calculation, and also introduces the topics of slope protection systems, rainwater management, or onsite grading.In the second edition, these basics have been updated to comprise new technologies including landscapingSMART, digital terrain modeling (DTM) and 3D machine control, as well as grading for roads and parking lots, and other terrain modeling construction machines. Numerous practical examples complement the theoretical foundations, and there is a section for exercises aimed at applying what has been learned.
Constructing shadows: tents, pergolas, cables, plants
2012
Trees are ideal sources of shade; where they cannot be used, their function is taken over by tents, pergolas, and pavilions. In the context of global warming, shade-providing construction is becoming an increasingly important building task. In Part One of this book, specialists in the field present the typical forms of shade-providing construction as well as the design approach associated with each. Part Two presents easily consultable overviews of 140 plants that have proven to be effective givers of shade in temperate, subtropical, and tropical zones. Part Three presents thirty built projects by celebrated architects and landscape architects from five continents. These constructions illustrate a wide variety of functions and scales and cover various climatic zones and cultural contexts. All structures are constructionally and systematically analyzed with texts, true-to-scale drawings, and photographs from their foundations to their connections and the shadows they cast.
Constructing Shadows
by
Gass, Siegfried
,
Petschek, Peter
in
Architecture -- Environmental aspects
,
ARCHITECTURE / Landscape
,
Landscape architecture
2012,2011
Im Horizont der globalen Erwärmung bekommt die Bau-Aufgabe schattenspendende Konstruktion eine immer stärkere Bedeutung. Im Ersten Teil des Buches werden durch Fachautoren die typischen Formen Schatten werfender Konstruktionen sowie die entwerferische Herangehensweise dargestellt. Im Zweiten Teil sind in synoptischer Form nachschlagefreundlich 140 Pflanzen charakterisiert, die sich in der Praxis für eine schattenspendende Bepflanzung in gemässigten, subtropischen und tropischen Zonen bewährt haben. Im Dritten Teil werden 30 gebaute Projekte von renommierten Architekten und Landschaftsarchitekten aus 5 Kontinenten vorgeführt. Diese Konstruktionen illustrieren unterschiedlichste Funktionen sowie Interventions-Maßstäbe, und sie decken verschiedene Klimazonen und kulturelle Kontexte ab. Alle Bauten werden nach denselben Kriterien systematisch-konstruktiv anhand von Text, maßstabgetreuen Zeichnungen und Fotos analysiert, vom Fundament über die Verbindungen bis zum Schattenwurf.