Multi-domain engineering simulation supporting the design of a wearable dehydration monitoring device for outdoor construction workers in high-heat environments (Qatar). The device uses an ESP32-based sensor system combining microfluidic sweat rate sensing, ion-selective sodium detection, PPG, and accelerometer data to estimate real-time hydration status. Simulations evaluate fluid transport at the microchannel scale, thermal performance of the wearable enclosure, and structural/environmental durability, informing design decisions ahead of physical prototyping.
by ahmedhussain18ahmedhussain18
by ahmedhussain18ahmedhussain18
by ahmedhussain18ahmedhussain18
by ahmedhussain18ahmedhussain18
kukuvava211 created this project
about 13 hours ago
Multi-domain engineering simulation supporting the design of a wearable dehydration monitoring device for outdoor construction workers in high-heat environments (Qatar). The device uses an ESP32-based sensor system combining microfluidic sweat rate sensing, ion-selective sodium detection, PPG, and accelerometer data to estimate real-time hydration status. Simulations evaluate fluid transport at the microchannel scale, thermal performance of the wearable enclosure, and structural/environmental durability, informing design decisions ahead of physical prototyping.