Elsevier

Advances in Space Research

Volume 14, Issue 11, November 1994, Pages 213-216
Advances in Space Research

A root moisture sensor for plants in microgravity

https://doi.org/10.1016/0273-1177(94)90299-2Get rights and content

Abstract

Development of components for bioregenerative life-support systems is a vital step toward long-term space exploration. The culturing of plants in a microgravity environment may be optimized by the use of appropriate sensors and controllers. This paper describes a sensor developed for determining the amount of fluid (nutrient solution) available on the surface of a porous ceramic nutrient delivery substrate to the roots of conventional crop plants. The sensor is based on the change in thermal capacitance and thermal conductance near the surface as the moisture content changes. The sensor could be employed as a data acquisition and control sensor to support the automated monitoring of plants grown in a microgravity environment.

References (14)

  • R.D. MacElroy et al.

    Controlled Ecological Life Support System

  • R.P. Prince et al.

    CELSS Breadboard Project at the Kennedy Space Center

  • J.E. Oberg et al.

    Pioneering Space, Living on the Next Frontier

    (1986)
  • T.W. Dreschel et al.

    Status of porous tube plant growth unit research

  • T.W. Dreschel et al.

    Control of water and nutrients using a porous tube: A method for growing plants in space

    HortScience

    (1989)
  • T.W. Dreschel et al.

    A summary of porous tube plant nutrient delivery system investigations from 1985 to 1991

  • T.W. Dreschel

    Tubular Membrane Plant-Growth Unit

    NASA Tech Briefs

    (1992)
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