Please use this identifier to cite or link to this item: https://dair.nps.edu/handle/123456789/5629
Title: From the Printer to Post: Evaluating the Feasibility of 3D-Printed Modular Barracks for Deployed Environments
Authors: Yesenia Pena
Keywords: additive manufacturing
AM
modular infrastructure
soldier barracks
barracks hut
B-Hut
containerized living unit
CLU
Issue Date: 6-Aug-2026
Publisher: Acquisition Research Program
Citation: APA 7
Series/Report no.: Logistics Management;NPS-LM-26-281
Poster;NPS-LM-26-282
Abstract: A vital element of an expeditious military is the ability to quickly deploy troops to austere and dynamic environments. Living quarters are an essential component of deployment. Currently, Department of Defense (DoD) branches rely on traditional solutions, such as temporary forward deployed barracks huts (B-Huts), containerized living units (CLUs), or Tent Extendable Modular Personnel (TEMPER), a modular, soft-walled, aluminum-framed tent. While practical, these frameworks fail to meet the demands of survivability and durability, force protection, and livability. Additionally, these options impose a significant logistical burden that requires shipment of construction material, engineer and transportation workforce, and associated time costs that strain operational and sustainment processes. This research conducts a qualitative comparative evaluation which analyzes the survivability, logistical efficiency, equipment lifespan, and habitability of conventional housing types in comparison to additive manufacturing (AM) construction. The study determined that as AM technology matures, its advantages are in structural resilience and progressive supply chain, which has the probability to reshape the DoD in future expeditionary infrastructure.
Description: Logistics Management / Student
URI: https://dair.nps.edu/handle/123456789/5629
Appears in Collections:NPS Graduate Student Theses & Reports

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