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北方地区温室系统的热力学:分析、评估和一次能源节约的前景。

Thermodynamics of greenhouse systems for the northern latitudes: analysis, evaluation and prospects for primary energy saving.

机构信息

The Institute for Agricultural and Fisheries Research (ILVO), Burg. van Gansberghelaan 115 bus 1, 9820 Merelbeke, Belgium.

出版信息

J Environ Manage. 2013 Apr 15;119:121-33. doi: 10.1016/j.jenvman.2013.01.013. Epub 2013 Mar 6.

Abstract

In Flanders and the Netherlands greenhouse production systems produce economically important quantities of vegetables, fruit and ornamentals. Indoor environmental control has resulted in high primary energy use. Until now, the research on saving primary energy in greenhouse systems has been mainly based on analysis of energy balances. However, according to the thermodynamic theory, an analysis based on the concept of exergy (free energy) and energy can result in new insights and primary energy savings. Therefore in this paper, we analyse the exergy and energy of various processes, inputs and outputs of a general greenhouse system. Also a total system analysis is then performed by linking the exergy analysis with a dynamic greenhouse climate growth simulation model. The exergy analysis indicates that some processes ("Sources") lie at the origin of several other processes, both destroying the exergy of primary energy inputs. The exergy destruction of these Sources is caused primarily by heat and vapour loss. Their impact can be compensated by exergy input from heating, solar radiation, or both. If the exergy destruction of these Sources is reduced, the necessary compensation can also be reduced. This can be accomplished through insulating the greenhouse and making the building more airtight. Other necessary Sources, namely transpiration and loss of CO2, have a low exergy destruction compared to the other Sources. They are therefore the best candidate for "pump" technologies ("vapour heat pump" and "CO2 pump") designed to have a low primary energy use. The combination of these proposed technologies results in an exergy efficient greenhouse with the highest primary energy savings. It can be concluded that exergy analyses add additional information compared to only energy analyses and it supports the development of primary energy efficient greenhouse systems.

摘要

在弗兰德斯和荷兰,温室生产系统生产大量经济重要的蔬菜、水果和观赏植物。室内环境控制导致了高的一次能源使用。到目前为止,温室系统中节约一次能源的研究主要基于能量平衡分析。然而,根据热力学理论,基于火用(自由能)和能量的概念进行分析可以产生新的见解和节约一次能源。因此,在本文中,我们分析了一般温室系统的各种过程、输入和输出的火用和能量。然后,通过将火用分析与动态温室气候生长模拟模型相连接,对整个系统进行了分析。火用分析表明,一些过程(“源”)是其他几个过程的起源,这两个过程都破坏了一次能源输入的火用。这些源的火用破坏主要是由热和蒸汽损失引起的。它们的影响可以通过加热、太阳辐射或两者的火用输入来补偿。如果这些源的火用破坏减少,所需的补偿也可以减少。这可以通过隔热温室和使建筑物更加密封来实现。其他必要的源,即蒸腾和 CO2 损失,与其他源相比,其火用破坏较小。因此,它们是设计为低一次能源使用的“泵”技术(“蒸汽热泵”和“CO2 泵”)的最佳候选者。这些提议的技术的组合导致了具有最高一次能源节约的火用高效温室。可以得出结论,与仅能量分析相比,火用分析增加了额外的信息,并支持开发节约一次能源的温室系统。

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