Advanced Engineering and Biological Systems Design for High-Density Controlled Environment Agriculture: A Comprehensive Specification Analysis

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1. Verfasser: Nasanjargal, Enkhamgalan
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Veröffentlicht: Zenodo 2026
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author Nasanjargal, Enkhamgalan
author_facet Nasanjargal, Enkhamgalan
contents <p dir="ltr">This final specification document outlines the comprehensive engineering, biological, and financial architecture required to construct and operate a high-density, 0.247-acre controlled environment agriculture (CEA) hydroponics facility in the Zamyn-Uud Free Economic Zone, Dornogobi Province, Mongolia. Designed to sustainably yield approximately 75,000 pounds of indeterminate tomatoes annually, the facility relies on a kinematic rolling bench system to achieve an aggressive 90% spatial efficiency within the cultivation zone. To overcome the extreme continental climate of the Gobi Desert and local regulatory requirements, the system integrates deep-driven helical piles for structural resistance, a 3,000-gallon parallel hydrologic buffer to counter regional water scarcity, precision proportional fertigation, and a massive 6,768-pint-per-day mechanical dehumidification array. Financial modeling indicates an initial capital expenditure averaging $287,500, balanced against an annual operating expense of $103,500. Supported by the aggressive tax and customs exemptions of the Free Economic Zone, the operation projects a highly favorable break-even point of roughly 3.42 years at peak operational efficiency. </p>
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publishDate 2026
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spellingShingle Advanced Engineering and Biological Systems Design for High-Density Controlled Environment Agriculture: A Comprehensive Specification Analysis
Nasanjargal, Enkhamgalan
<p dir="ltr">This final specification document outlines the comprehensive engineering, biological, and financial architecture required to construct and operate a high-density, 0.247-acre controlled environment agriculture (CEA) hydroponics facility in the Zamyn-Uud Free Economic Zone, Dornogobi Province, Mongolia. Designed to sustainably yield approximately 75,000 pounds of indeterminate tomatoes annually, the facility relies on a kinematic rolling bench system to achieve an aggressive 90% spatial efficiency within the cultivation zone. To overcome the extreme continental climate of the Gobi Desert and local regulatory requirements, the system integrates deep-driven helical piles for structural resistance, a 3,000-gallon parallel hydrologic buffer to counter regional water scarcity, precision proportional fertigation, and a massive 6,768-pint-per-day mechanical dehumidification array. Financial modeling indicates an initial capital expenditure averaging $287,500, balanced against an annual operating expense of $103,500. Supported by the aggressive tax and customs exemptions of the Free Economic Zone, the operation projects a highly favorable break-even point of roughly 3.42 years at peak operational efficiency. </p>
title Advanced Engineering and Biological Systems Design for High-Density Controlled Environment Agriculture: A Comprehensive Specification Analysis
url https://doi.org/10.5281/zenodo.18911398