Modified energy cascade model adapted for a multicrop Lunar greenhouse prototype

被引:17
作者
Boscheri, G. [2 ]
Kacira, M. [1 ]
Patterson, L. [1 ]
Giacomelli, G. [1 ]
Sadler, P. [3 ]
Furfaro, R. [1 ]
Lobascio, C. [2 ]
Lamantea, M. [2 ]
Grizzaffi, L. [2 ]
机构
[1] Univ Arizona, Tucson, AZ 85721 USA
[2] Thales Alenia Space Italia, Turin, Italy
[3] Sadler Machine Co, Tempe, AZ 85281 USA
关键词
Bioregenerative life support system (BLSS); Crop models; Energy cascade model; Life sciences; Lunar greenhouse; ADVANCED LIFE-SUPPORT; SYSTEMS;
D O I
10.1016/j.asr.2012.05.025
中图分类号
V [航空、航天];
学科分类号
08 ; 0825 ;
摘要
Models are required to accurately predict mass and energy balances in a bioregenerative life support system. A modified energy cascade model was used to predict outputs of a multi-crop (tomatoes, potatoes, lettuce and strawberries) Lunar greenhouse prototype. The model performance was evaluated against measured data obtained from several system closure experiments. The model predictions corresponded well to those obtained from experimental measurements for the overall system closure test period (five months), especially for biomass produced (0.7% underestimated), water consumption (0.3% overestimated) and condensate production (0.5% overestimated). However, the model was less accurate when the results were compared with data obtained from a shorter experimental time period, with 31%, 48% and 51% error for biomass uptake, water consumption, and condensate production, respectively, which were obtained under more complex crop production patterns (e.g. tall tomato plants covering part of the lettuce production zones). These results, together with a model sensitivity analysis highlighted the necessity of periodic characterization of the environmental parameters (e.g. light levels, air leakage) in the Lunar greenhouse. Published by Elsevier Ltd. on behalf of COSPA
引用
收藏
页码:941 / 951
页数:11
相关论文
共 23 条
[11]  
Jones H., 2000, P 30 INT C ENV SYST
[12]  
Jones H.W., 2003, NATL AERONAUT SPACE
[13]  
Mitchell C, 1994, AM J CLIN NUTR, V60, P820
[14]  
Monje O., 1998, Predicting transpiration rates of hydroponically-grown plant communities in controlled environments
[15]  
Pitts M J, 1999, Life Support Biosph Sci, V6, P259
[16]  
Sadler P., 2009, 39 INT C ENV SYST SA
[17]  
Sadler P., 2007, CONCEPTUAL DESIGN LU
[18]  
Sadler P., 2008, 38 INT C ENV SYST SA
[19]   Water uptake by tomato plants grown in closed hydroponic systems dependent on the EC-level [J].
Schwarz, D ;
Kuchenbuch, R .
INTERNATIONAL SYMPOSIUM ON WATER QUALITY AND QUANTITY IN GREENHOUSE HORTICULTURE, 1998, (458) :323-328
[20]  
Volk T, 1995, Life Support Biosph Sci, V1, P119