Young girl sitting on numerals 2026 in park portrait AI Image Prompt
Create an ultra-realistic vertical DSLR portrait of a young college girl sitting on oversized freestanding 3D numerals spelling {argument name="year text" default="2026"} in a beautiful park. She is centered in frame, seated casually across the top of the numbers with one leg crossed over the other, one hand resting on the left side of the large "2," and both white sneakers visible near the front. Preserve the subject as a photorealistic college-age woman with long straight light-brown hair falling over her shoulders, a natural smile, and relaxed confident posture. Outfit: {argument name="top" default="yellow cropped hoodie with black drawstrings and black side stripes on the sleeves"}, {argument name="pants" default="black skinny jeans"}, and {argument name="shoes" default="white lace-up sneakers"}. The 3D text should have exactly 4 large digits, "2," "0," "2," and "6," with warm gold front faces and dark black side depth, placed on wet stone paving with subtle reflections. Background: lush green park with trees, hedges, and faint pink flowers, heavily blurred with shallow depth of field. Lighting: soft daylight with warm cinematic sun flare from the upper right, realistic highlights, natural skin tones, and gentle contrast. Camera look: 85mm lens, shallow depth of field, bokeh, photorealistic, ultra-detailed, 8K, portrait orientation, no extra text, no watermark, no additional people.
Content: Structure includes subject (college girl), 3D text numerals, park background, outfit details, lighting (cinematic sun flare upper right), lens (85mm shallow DOF), color/materials (warm gold text, dark black sides), vertical composition, 8K quality. Formula: subject+scene+text+outfit+lighting+lens parameters+quality specs.
Pros: Rich specific details make it actionable; unified style with clear ultra-realistic cinematic look.
Cons: Relies heavily on 3D text rendering, high risk of failure; fixed outfit options limit flexibility.
Reference image: No obvious reference-image dependency
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