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Simulated Performances of a Heat Pump System for Energy and Water Conservation in Open and Confined Greenhouse Systems

机译:开式和密闭温室系统中用于节能和节水的热泵系统的模拟性能

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摘要

The purpose of this study was to determine and compare the performances of conventional and heat pump systems for energy and water conservation in open and confined greenhouse systems. Conventional gas furnaces and evaporative cooling, respectively, provided heating and cooling in the conventional system. In the heat pump systems, gas-fired heat pump units provided both heating and cooling. The greenhouse with heat pump units also had an option to be operated as a completely confined system, using one of the heat pump units as a dehumidifier. Average energy consumption in winter was 56.9, 23.5, and 11.3 MJ/day.m² in the conventional, open, and closed loop (confined) heat pump systems, respectively. In spring, the same greenhouse systems averaged 20.6, 8.8, and 5.3 MJ/day.m², respectively. In summer, energy consumption was considerably less than those predicted for winter and spring. The major portion of the total energy consumption was for heating. Daily transpiration rates averaged for winter, spring, and summer were 2.09, 2.02, and 1.02 kg H2O/day.m² in the conventional, open, and closed loop heat pump systems, respectively. In the closed loop system, almost all the transpired water was recovered on the cooling coils, making the overall water consumption in this system essentially zero. This study concluded that greenhouse operation with the heat pump system has a great potential for enormous energy, water, and CO2 savings, as well as cooling and dehumidification. A confined greenhouse with a heat pump system would make it easier to control the humidity and keep high CO2 levels, while reducing the risk of insects and diseases. A combination of open and closed loop systems would be the most energy conserving system, operating the system as a closed loop system in winter, spring and fall, and as an open system in summer.
机译:这项研究的目的是确定并比较常规和热泵系统在开放式和密闭温室系统中的节能和节水性能。常规的煤气炉和蒸发冷却分别在常规系统中提供加热和冷却。在热泵系统中,燃气热泵单元既提供加热又提供冷却。带热泵单元的温室还可以选择将其中一个热泵单元用作除湿机,作为完全密闭的系统运行。在常规,开式和闭环(密闭)热泵系统中,冬季的平均能耗分别为56.9、23.5和11.3 MJ /day.m²。在春季,相同的温室系统分别平均为20.6、8.8和5.3 MJ /天.m²。在夏季,能源消耗大大低于冬季和春季的预期。总能耗的主要部分用于加热。在常规,开环和闭环热泵系统中,冬季,春季和夏季的平均每日蒸腾速率分别为2.09、2.02和1.02 kg H2O /day.m²。在闭环系统中,几乎所有的蒸发水都在冷却盘管中回收,使该系统中的总耗水量基本为零。这项研究得出的结论是,使用热泵系统的温室运行具有巨大的潜力,可以节省大量的能源,水和二氧化碳,以及进行冷却和除湿。带有热泵系统的密闭温室可以更轻松地控制湿度并保持较高的CO2水平,同时减少虫害和疾病的风险。开环和闭环系统的组合将是最节能的系统,该系统在冬季,春季和秋季作为闭环系统运行,而在夏季作为开放系统运行。

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