装置艺术--罗德岛艺术学院 HYPARBOLE 曲线装置

07 Jun 2022
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装置艺术--罗德岛艺术学院 HYPARBOLE 曲线装置

 

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        一座独特的曲线装置登录罗德岛艺术学院艺术中心,为学院氛围更增一抹艺术氛围。它悦动的曲线,为在校学生和教职工,以及每一个拜访于此的人们带去创作的灵感,激发它们的想象力。
        A hyperbolic surface thrusts itself into the air at the entrance to Rhode Island College’s Fine Arts Center, as a dramatic opening to the campus scene. In a burst of bright green curves, it enacts a threshold to creative practice and ushers studio-goers, faculty and campus visitors alike toward inspiration and action. 
  

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        HYPARBOLE以其多面性吸引着各个方向的来访者。三条曲线朝不同方向抛出,在保证自身被来访者可见的情况下向外延展。其内部形成一个独特的空间,使来访者可以闲散于此,休憩和娱乐。装置内部围合并拉伸出一个如眼睛般的洞口,该中心开口高度达22英寸,当你进入便被它深深的吸引,不由自主得迷失在装置高度,薄厚,以及内部形态的扭曲变化中。
        HYPARBOLE’s multifaceted formal character draws visitors in from all angles. Its three paraboloid edges peel up towards distinct directions of approach, and its stature ensures that it is visible from the extents of the site, yet it never detracts from the building that it announces. Inside, it provides a whimsical and unfamiliar environment in which lingerers and passersby can lose time under dappled light. Revealed within is an oculus with a magnetic pull: a central opening in the surface projects up to a height of 22’. Your instinct is to gaze up, but inevitably you are lost in the push and pull of the form, its patterning, its improbable height and thinness. 
  

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        该抛物曲面为全铝质结构,该拱面又称作马鞍拱,即用无限延伸曲面围合而成的三维模型。基于Felix Candela在超薄混凝土上的马鞍拱实验,设计师运用双曲线支撑原理,设计出这个三腿结构。平侧面马鞍拱的固有缺点是结构支撑的稳定性问题,而褶皱的表面有助于抵抗这种侧边荷载。装置将超薄铝薄用作支撑结构和外表皮,提高了与环境的适应性。
        The aluminum structure assumes the geometry of a hyperbolic paraboloid, or hypar: a three-dimensional, double-ruled surface that can be described using infinite planar, linear elements to form a smooth surface. With reference to Felix Candela’s experiments with the hypar geometry in thin-shell concrete, our three-legged structure relies on its double-curvature for support. The addition of a pleated base lends additional resistance to lateral loads–an inherent weakness of the hypar’s flat sides. The ultra-thin aluminum shell merges skin and support to great atmospheric effect.


 

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        装置透过周身的孔洞散发着轻盈明亮之感。装置弯曲表面的切割线源自复杂表面的模拟切割实验。这些表面的空洞,让装置内部展现动感的光影变化,也让夜晚露出的微光变得神秘而闪烁。
        Its lightness is further emphasized with porosity. Cuts in the shell are derived from simulated flows across the complex surfaces. These openings produce dynamic light conditions, which change the character of the space throughout the day and emit an unearthly glow at night. 


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        这座充满实验性和探索性的艺术校园,成为HYPARBOLE的最佳栖息地。该装置结构材料一体化的设计创新,基于设计师的不懈努力和多年如一日的耐心工作。经过反复的研究和试验,HYPARBOLE装置终于自信的站稳了脚跟。装置高22英寸,宽25英寸,进深30英寸,稳定的坐立于三个混凝土基底上。
        The College, a site of experimentation and discovery, makes an appropriate home for HYPARBOLE. The structure is itself a product of deliberate and focused research, several years in the making, and builds on the studio’s efforts to unify structure, form and experience into a coherent material system. Following a process of iterative development and prototyping, HYPARBOLE in its final form stands delicately and confidently at this focal point. Measuring an imposing 22′ high, 25′ wide, and 30′ deep, it is a force majeure touching down on only three concrete bases. 


 

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