Abstract:
The purpose of the dissertation: (1) To investigate and analyze the
landscape features and requirements of Qilu Software Park. (2) To explore the
application of parametric design in landscape development and environmental value
enhancement for Qilu Software Park. (3) To develop a new landscape design model
that reflects the genius loci of Qilu Software Park by applying the aesthetics of
parametric design.
The objective of this research is to study and analyze the genius loci and
landscape requirements of Qilu Software Park, considering cultural, environmental,
and spatial usage factors to systematically understand the unique characteristics of
the area and the needs of its users. Additionally, the research focuses on exploring
the application of parametric design in the development and enhancement of the
parks landscape, emphasizing the integration of technology, innovation, and
ecological sustainability to improve spatial efficiency and environmental value.
Furthermore, the study aims to develop a new landscape design model that reflects
the genius loci of Qilu Software Park by applying the aesthetics of parametric design
to create an artistically distinctive space. This approach seamlessly integrates
technology and innovation while ensuring alignment with the context of a high-tech
industrial park, thereby enhancing both functional performance and environmental
sustainability.
This research employs the Analytic Hierarchy Process (AHP) to quantify
the landscape characteristics of Qilu Software Park. The findings indicate that the
integration of technology, humanities, and nature (0.559), the expression of fountain
culture (0.777), and ecological sustainability (0.833) are the primary factors shaping the identity of the area. In terms of landscape development, parametric design
enhances spatial allocation efficiency, improves ecological system control, and
strengthens cultural storytelling capabilities, enabling the landscape to interact with
and adapt to its context effectively. Drawing on the aesthetics of parametric design,
this study proposes the concept of a "Landscape of Motion and Natural Harmony,"
which integrates dynamic water and topographical elements. These include fluidly
curved fountain plazas, pavement patterns that reflect movement, and
topographical simulations that align with natural formations. Additionally, the design
incorporates droplet-shaped pavilions, wave-like pedestrian bridges, and a water
quality treatment system to fully embody the identity of Qilu Software Park in
ecological, cultural, and aesthetic dimensions. This approach not only enhances
environmental quality but also elevates the cultural value of the landscape