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Development of a New Energy-Saving Pipe-Framed Greenhouse

机译:新型节能管棚式温室的开发

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We summarize the basic techniques used to save energy in a greenhouse and discuss the development of a new energy-saving pipe-framed greenhouse, similar to the type used on most small-scale farms in Japan. To enhance the thermal insulation performance of a pipe-framed greenhouse, a multi-layered thermal curtain was installed. As a result of our experiments, both the heating load and the heating oil consumption in the greenhouse with a multi-layered thermal curtain (M-house) were approximately 40% lower than those in the control greenhouse with a conventional thermal cover (C-house). Furthermore, the heating oil consumption was also reduced by approximately 60% in the M-house equipped with water heat storage, which stored solar energy in daytime and released heat to the greenhouse at night. This multi-layered thermal curtain is expected to gain recognition as the most effective energy-saving material available and immediate widespread use nationwide is expected. Another experiment was performed concerning the structural reinforcement of pipe-framed greenhouses. Pipe-framed greenhouses are usually constructed with single-arch pipes in Japan and there has been a recent increase in greenhouses collapsing due to strong winds. Accordingly, techniques to reinforce the structure of pipe-framed greenhouses were also developed.
机译:我们总结了温室节能的基本技术,并讨论了新型节能管式温室的开发,类似于日本大多数小型农场使用的温室。为了提高管式温室的隔热性能,安装了多层隔热帘。根据我们的实验结果,采用多层热幕(M-house)的温室中的热负荷和燃料油消耗均比采用传统热罩(C-屋)。此外,配备水蓄热装置的M室的取暖油消耗量也减少了约60%,该房屋在白天存储太阳能,在晚上将热量释放到温室。这种多层热幕有望获得认可,因为它是最有效的节能材料,并且有望在全国范围内广泛使用。进行了另一项有关管式温室结构加固的实验。在日本,管框式温室通常是用单拱形管道建造的,由于强风,最近温室的塌陷有所增加。因此,还开发了加强管式温室结构的技术。

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