PROMPTS
PROMPTS
Rule Alignment Note: The prompts below utilize the identical apps from the documentation above (Perplexity, Gemini, Midjourney) but represent a separate, expanded, and hyper-detailed prompt iteration designed to explore alternate design contingencies, structural depths, and specific material configurations.
Tool 1: Research AI (Perplexity)
Act as a Senior Building Performance Analyst and Sustainable Facade Engineer. Conduct an exhaustive, data-driven environmental and solar path analysis for a project site located at Unipark, Kajang, Selangor, Malaysia (Latitude 2.98° N, Longitude 101.73° E). The project is a 1200-square-meter multi-purpose clubhouse featuring a double-skin facade (DSF).
Provide a detailed report addressing the following technical vectors:
1. Provide the exact solar azimuth and altitude angles during peak solar radiation periods throughout the year (specifically focusing on the Equinoxes in March/September and Solstices in June/December at 12:00 PM, 2:00 PM, and 4:00 PM).
2. Analyze the micro-climatic thermal stress impacts (specifically Dry Bulb Temperature peaks, relative humidity ranges, and prevailing monsoon wind directions) typical of the Kajang/Bangi geographic corridor
3. Evaluate the precise aerodynamic and thermodynamic performance of a hexagonal/honeycomb structural outer skin configuration. How does changing the aspect ratio (depth-to-width ratio of the individual cells) impact the Shading Coefficient (SC) and the Overall Thermal Transfer Value (OTTV) of the building envelope?
4. Detail the structural physics, sizing, and safety requirements under local Uniform Building By-Laws (UBBL) guidelines for an external glass cavity depth. Include recommendations for natural stack-effect ventilation velocities within a 600mm to 900mm air cavity to prevent hot air stagnation. Do not summarize or provide approximations; deliver full engineering parameters, empirical formulas where relevant, and peer-reviewed facade performance benchmarks.
Tool 2 : Gemini (Text AI)
Generate a multi-page architectural manifesto and spatial breakdown detailing:
1. THE SCULPTURAL MASSING TRANSFORMATION SEQUENCE: Document step-by-step how a generic 3-story rectangular block is manipulated. Describe how the massing is elevated on a structural pilotis framework to free the ground plane, how the volumetric profile is hollowed out to induce cross-ventilation, and how the roofline undergoes an aerodynamic, concave curvature deformation to channel prevailing winds and create self-shading surfaces.
2. FACADE PARAMETRIC LOGIC: Detail the algorithmic rules governing the honeycomb skin. Explain how individual hexagonal modules transition from deep, compressed cells with high shading profiles on the East and West facets to highly transparent, elongated cells on the North and South facets.
3. DETAILED SPATIAL PROGRAM AND INTEGRATION: Create a detailed, non-summarized programmatic breakdown of the 1200 sqm layout across 3 levels (Ground Floor Porous Plaza, First Floor Intermediate Lounge/Co-working, Second Floor Double-Volume Multi-Purpose Hall). Explain exactly how the hexagonal skin controls daylighting levels (Lux targets of 300-500 Lux for workspaces, 200 Lux for social spaces) and mitigates glare at peak 12:00 PM sun angles without deploying interior motorized blinds. Use sophisticated architectural vocabulary throughout.
Tool Used: Midjourney (Image AI)
IMAGE AI
Generate an architectural exterior rendering of the "Solar Flare ARCA Clubhouse", designed by a collaboration of architectural masters. The building is a highly defined 3-story structure situated on a flat green plane under an equatorial dusk sky, deep golden orange and twilight purple gradient atmosphere. The massing features a sweeping, concave, aerodynamic curved roofline that creates a dramatic silhouette. The entire building volume is elevated on minimalist structural white concrete pilotis, leaving the ground floor completely open, transparent, and porous with an visible internal lit cafe and social spaces. The upper two levels are completely wrapped in a parametric, structural double-skin facade comprised of a precise, flawless hexagonal honeycomb frame.