Print button

Abstract EANA2026-53



Settlement on Mars: The Architectural structures for Bioregenerative life support systems (BLSS) across the surface of Mars
Pakin Sripumma (1,3), Pasu Permpipat (1,3) and Chatchawal Wongchai (2,3)
(1) Demonstration School University of Phayao, Phayao, 56000 THAILAND (2) Division Biology, School of Science, University of Phayao, 56000 THAILAND (3) Astrobiology LAB, University of Phayao, 56000 THAILAND


The challenges of establishing human settlements on the Martian surface require long-term study of its physical characteristics and surface structure.

This, in turn, creates limitations on the sustainability of astronaut life, necessitating the presence of survivable biomes throughout the research process.

Creation of the architectural structures for Bioregenerative life support systems (BLSS) becomes neccesary across the surface of Mars and shows high

potential for finding well-preserved organic materials. The hexagonal architectural form was designed and developed to serve as a source of food crops,

create a water circulation system, and generate breathable air on Mars. Plant tissue culture and phyto-stem cell of Thai water morning glory, lotus,

carnivorous plant, orchid, rice and maiz were studied. Ecosystem and human living base were designed to support astronaut. Mars surface was focused

on finding organic materials for growing plant in space. Our model of study was collaborated with AI and space engineering which enhances science

students to develope space innovation and architecture for growing plant in extremophile conditions.