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An improved open-top chamber warming system for global change research.

机译:一种用于全球变化研究的改进的开放式顶棚加热系统。

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This study is an assessment of an improved temperature warming system developed to enhance global warming research-based forest ecosystem and soil ecophysiological experiments. The architecture couples a standard open-top chamber (OTC) with a heating cable. A 16 m wire cable with an 18 W m-1 and 288 W h-1 power rating was coiled around a polyvinyl chloride (PVC) pipe 2.5 m in length and 3.5 cm in diameter. The pipe was reshaped into a circle and fixed inside the OTC at a height of 15 cm. PVC pipe distance to plants was 10 to 15 cm while distance to OTC inner walls was 15 cm. The cable was constructed from a heating source with an alloy resistance wire, an aluminum foil and copper wire shielded layer, a crosslinking polyethylene inner insulator, a PVC coating, and a tinned copper grounding wire. After the cable is powered up, air and soil inside the OTC-cable system is heated by conductivity. Temperature is manipulated according to the voltage and resistance of the cable. The OTC-cable system was developed to examine plant reaction to an increase in air and soil temperatures by 2.84 degrees C and 1.83 degrees C, respectively. Temperature values are adjustable by changing cable and PVC pipe length. It offers a new, affordable, low energy consumption and low running cost method by which to study climate change effects on forest ecosystems. This method is especially useful for application in forest ecosystems of many developing countries or in many remote areas of developed countries where the feasibility in supplying sufficient power from local power grids is questionable.
机译:这项研究是对改进的温度变暖系统的评估,该系统的开发旨在增强基于全球变暖研究的森林生态系统和土壤生态生理实验。该架构将标准的开放式顶棚(OTC)与加热电缆耦合在一起。将一条额定功率为18 W m -1 和288 W h -1 的16 m电线绕在长度为2.5 m,长度为3.5 m的聚氯乙烯(PVC)管道上直径厘米。将管子改制成圆形,并在15厘米高的OTC内部固定。到植物的PVC管距离为10至15厘米,到OTC内壁的距离为15厘米。电缆由带有合金电阻丝,铝箔和铜丝屏蔽层,交联聚乙烯内部绝缘体,PVC涂层以及镀锡铜接地线的加热源构成。电缆通电后,OTC电缆系统内部的空气和土壤会被电导率加热。根据电缆的电压和电阻来控制温度。开发了OTC电缆系统以检查植物对空气和土壤温度分别升高2.84摄氏度和1.83摄氏度的反应。温度值可通过改变电缆和PVC管的长度来调节。它提供了一种新的,负担得起的,低能耗和低运行成本的方法,用于研究气候变化对森林生态系统的影响。这种方法对于许多发展中国家的森林生态系统或发达国家的许多偏远地区的应用特别有用,因为从当地电网提供足够电力的可行性值得怀疑。

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