Short Description
A handcrafted ceramic surface composed of organically shaped modules inspired by naturally weathered river stones. Varied scales, mineral tones and subtle glaze movement combine to create a calm aggregate field that feels geological, tactile and architectural.
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Product Description
Riverstone Aggregate Field (DIDFIG-WS) is a handcrafted ceramic surface produced by the VLVLK Team.
Composed of individually formed ceramic elements ranging from small pebble-like modules to larger stone forms, the surface reads as a naturally assembled field rather than a repeated pattern. Differences in scale, shape and chromatic variation create visual depth while maintaining an overall sense of balance and cohesion.
Soft mineral whites, warm sands, muted earth tones, pale greys and subtle lavender undertones interact across the installation, evoking riverbeds, coastal deposits and geological accumulations shaped over time. The resulting field feels calm and atmospheric, rewarding both close inspection and architectural-scale viewing.
The composition is intentionally structured around variation. Larger forms act as visual anchors, while smaller elements generate texture, continuity and rhythm throughout the field. No two installations are identical.
Suitable for residential, hospitality and commercial environments where a materially expressive and highly tactile ceramic surface is desired.
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Surface Classification
Host
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Wall
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Floor
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Wet Area
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Pond
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Pool
System
Primary Field Read
Secondary Field Read
Primary Chroma
Surface Character
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Organic
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Geological
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Tactile
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Atmospheric
Material Behaviour
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Specification
Code: DIDFIG-WS
Artist: VLVLK Team
Designer: VLVLK Team
Unit: 1 m²
Sold: Per square metre
Colour Detail: Variegated Mineral Blend
Applications
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Controlled Variability
Each component is individually formed, glazed and fired. Variations in shape, scale, colour, surface movement and glaze response are expected and contribute to the intended field behaviour of the installation.
These characteristics should be interpreted as authored qualities rather than manufacturing defects.