Partial cooling of strawberry plants by water tube utilizing geo-thermal heat pump

Moritani Shigeoki, Nanjo Hirotada, Itou Atsushi
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引用次数: 3

Abstract

A commercial heat pump was utilized to cool strawberry plants using a heat exchanger well at 10 m of soil depth. Two lines of strawberry were planted to grow fully on a high bench of 20 m length. The cooling treatment was conducted through a water tube connected to the chiller tank of the heat pump. A single water tube was buried under the soil surface. Two kinds of set-up for the water tube on the soil surface were designed to cool the strawberry crown. Compared with that of the control, the temperature of crown and soil was effectively lowered by the two treatments. Regardless of the setup of the water tube, the temperature of soil and crown did not differ between the two treatments. Considering the high water temperature of the heat exchanger tank of the heat pump system, the length of the heat exchange well was insufficient for the extraction of sufficient geothermal energy in this experiment. However, the converted heat pump and facile establishment of wells achieved cooling of the 4 benches effectively and at a reasonable cost.
利用地源热泵对草莓植株进行水管局部冷却
利用商业热泵在土壤深度10米处使用热交换器井冷却草莓植株。在20米长的高台上,种植了两行草莓,使其充分生长。冷却处理通过连接到热泵冷水箱的水管进行。在土壤表面下埋了一根水管。设计了两种放置在土壤表面的水管来冷却草莓树冠。与对照相比,两种处理均能有效降低树冠和土壤温度。无论水管的设置如何,土壤和树冠的温度在两种处理之间没有差异。考虑到热泵系统换热水箱水温较高,本实验换热井长度不足以提取足够的地热能。然而,改造后的热泵和简便的水井建立以合理的成本有效地实现了4个工作台的冷却。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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