
PET · UTCI · PMV
Thermal Comfort
Outdoor and indoor human thermal comfort via PET, UTCI, and PMV. Seasonal and peak-condition scenarios for public realm, workplace, and residential spaces.
Discuss thisTransforming complex fluid behaviour into predictable engineering metrics. We deliver high-fidelity aerodynamic, thermal, and multiphase simulations for mission-critical hardware.
Request ConsultationMohakat runs validated CFD and building-physics simulation across the built environment — thermal comfort, urban microclimate, building performance, ventilation, and bioheat modelling. Tailored scope, validated methods, review-ready deliverables.

PET · UTCI · PMV
Outdoor and indoor human thermal comfort via PET, UTCI, and PMV. Seasonal and peak-condition scenarios for public realm, workplace, and residential spaces.
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ABL · RANS · LES
High-resolution CFD from street canyon to district scale, quantifying wind acceleration corridors, pedestrian comfort, and natural ventilation potential.
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BIOHEAT · DIGITAL TWIN
Our in-house bioheat solver resolves tissue-level heat exchange, taking comfort from a room average down to the individual occupant.
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BEM · ENVELOPE · HVAC
Whole-building dynamic energy simulation covering envelope performance, HVAC systems, controls strategies, and occupancy profiles from concept through handover.
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ACH · AGE OF AIR
CFD ventilation-effectiveness studies — supply and extract layout, air distribution, mixing, and contaminant removal — that keep occupied zones comfortable and well ventilated.
Discuss thisMOHAKAT (محاكاة, Arabic for simulation) is an environmental physics and computational fluid dynamics practice. We predict how air, heat, moisture, and radiation will behave in and around a building, a street, or an entire district, before any of it is built.
This is possible because the physical world keeps its accounts. Mass, momentum, and energy are never created or destroyed, only moved, and those conservation laws can be written as equations and solved numerically. So we rebuild a site inside a computer: its climate, its geometry, its materials, and its people who will occupy it. Then we let the physics run, resolved at the scale where the design question actually lives.
What comes back is not an impression of whether a space will feel comfortable or perform efficiently. It is a quantity (a temperature, an air speed, a comfort index, a risk) with its assumptions written down, its sensitivity and its convergence checked. It is evidence another engineer can audit and a client can defend.
Send the site, scope, timeline, and the decision you need to support. We will come back with a clear simulation route and the evidence needed for design review.