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首页> 外文期刊>Journal of Agricultural Engineering Research >Optimal control strategies for carbon dioxide enrichment in greenhouse tomato crops - Part II: using the exhaust gases of natural gas fired boilers
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Optimal control strategies for carbon dioxide enrichment in greenhouse tomato crops - Part II: using the exhaust gases of natural gas fired boilers

机译:温室番茄作物中二氧化碳富集的最佳控制策略-第二部分:使用天然气锅炉的废气

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摘要

Optimized control strategies for carbon dioxide (CO{sub}2) enrichment of greenhouse tomato crops using CO{sub}2 from the exhaust gases of boilers burning natural gas are presented. In one group of strategies, the heat produced during CO{sub}2 generation which exceeds the immediate heat requirement of the greenhouse is stored as hot water and used subsequently for heating. The simulations show that, use of optimal control can increase the financial margin of crop value over the combined expenditure on gas used for CO{sub}2 and heating by £2.3 m{sup}(-2) (11%) when heat is not stored and by £4.9 m{sup}(-2) (24%) when heat is stored, compared with enriching with CO{sub}2 only when heating is required. A 30% increase in gas price reduced the financial margin by 11%, whereas a 30% increase in tomato price increased the margin by 40%. The capacity of the heat store places a limit on the amount of heat that can be stored and consequently on the amount of natural gas that can be burnt and the associated amount of CO{sub}2 produced during the day. The optimum size of heat store is 20 × 10{sup}(-3) m{sup}3 per unit greenhouse area.
机译:提出了利用燃烧天然气的锅炉废气中的CO {sub} 2富集温室番茄作物二氧化碳(CO {sub} 2)的优化控制策略。在一组策略中,在CO {sub} 2生成过程中产生的热量超过了温室的即时热量需求,将其作为热水存储并随后用于加热。模拟结果表明,当热量为热量时,使用最优控制可以使用于CO {sub} 2和供暖的天然气的总支出的收成增加£ 2.3 m {sup}(-2)(11%)。不储存,储存热量时增加£ 4.9 m {sup}(-2)(24%),而仅在需要加热时才富含CO {sub} 2。汽油价格上涨30%,财务利润率下降11%,而番茄价格上涨30%,利润率上升40%。储热器的容量限制了可存储的热量,因此限制了可燃烧的天然气量以及白天产生的相关CO {sub} 2量。每单位温室面积的最佳蓄热器尺寸为20×10 {sup}(-3)m {sup} 3。

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