<oai_dc:dc xmlns:oai_dc="http://www.openarchives.org/OAI/2.0/oai_dc/" xmlns:dc="http://purl.org/dc/elements/1.1/" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xsi:schemaLocation="http://www.openarchives.org/OAI/2.0/oai_dc/ http://www.openarchives.org/OAI/2.0/oai_dc.xsd"><dc:title>Second Nature: A Biomimetic Escape for Urban Respite</dc:title><dc:creator>Rajan, Varsha </dc:creator><dc:subject>biomimicry</dc:subject><dc:subject>Japan</dc:subject><dc:subject>climate change</dc:subject><dc:subject>spiderweb</dc:subject><dc:subject>sound</dc:subject><dc:subject>acoustics</dc:subject><dc:coverage>Architecture</dc:coverage><dc:relation>BARCH</dc:relation><dc:description>The term biomimicry has existed since 1982, but biomimetic inventions date to long
before then. One of the first examples of biomimicry can be found in Leonardo da Vinci’s
sketches for the flying machine, based on the anatomy and flight of birds. Yet, in 42 years since
its official existence, architects have yet to take full advantage of solutions provided by nature.
This thesis focuses on learning from the biomimetic applications of spiders and spider web
production to inform architectural strategies for mitigating heat, sound, and environmental stress
in Tokyo. There are many characteristics of spider silk that architects can learn from. Useful
properties from spider silk have already been adapted into biomimetic systems for suspension
bridge wires, bulletproof vests, and medical adhesives. The tensile strength, network of
connections, and water-capturing capabilities all present opportunities for architectural
innovation.
The site is in Tokyo, Japan between Ueno Park and downtown Ueno. Tokyo faces rising
temperatures, intensified by the urban heat island effect, along with increased rainfall and
frequent earthquakes. Drawing from the weaving, networks, and strength of spiderwebs, this
thesis explores how biomimetic design strategies can inform architectural responses to these
environmental conditions. The intent is to design an architecture that can adapt to multiple
typologies and scales throughout the city. Like the spider web, which pops up in corners,
between tree branches, and in both remote and visible areas, this design adapts to its
surroundings.
The proposed program runs along an overpass outside Ueno Park. Raised above the
existing train lines, this program aims to provide shade and sound insulation for an indooroutdoor
space.</dc:description><dc:contributor>Peter Aeschbacher, Thesis Supervisor</dc:contributor><dc:contributor>Orsolya Gaspar, Thesis Honors Advisor</dc:contributor><dc:rights>open_access</dc:rights><dc:date>2025-12-08T15:14:55Z</dc:date><dc:identifier>https://honors.libraries.psu.edu/catalog/9568var5229</dc:identifier></oai_dc:dc>