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Electricity Transmission Under South China Sea by Suspending Cables Within Pipes

机译:南海海底管道内悬挂电缆的输电

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There is currently no way to send power from hydroelectricity rich Sarawak to fossil fuel dependent Peninsular Malaysia which is separated by 630km of sea. A XLPE based submarine cable was found to be impractical after an in-dept research indicated the losses will be too high. But bare transmission lines can carry the needed power. Therefore, this work recreates overhead line conditions under the sea by suspending bare cables at the center of oil and gas pipes. Eddy current losses plus joule heating was measured as current is increased in steps of 5A up to 55A with 11 switchable parallel circuits of 12 incandescent bulbs each flowing in an uninsulated cable suspended at the center of eight 92cm length pipes of diameters ranging from 2.18cm to 8.81cm. The eddy current was measured as the heat generated on the pipes with an infrared camera. This data was extrapolated to HV transmission levels to determine the pipe diameter to negate losses. Then DC current was injected. Correspondingly the design of the cable-in-pipe system was made with feedback from O&G experts. At the forefront of this industry, HDPE pipes are being used which will be perfect for HV transmission, without worrying about eddy current or arching.
机译:目前没有办法从水力发电富沙捞越送到化石燃料依赖的半岛马来西亚,占地6.3千米。基于XLPE的潜艇电缆被发现在进行中的研究后发现是不切实际的。损失将太高。但裸机可以承载所需的电力。因此,这项工作通过悬挂在油气管道中心的裸电缆下,在海下重建架空线条条件。测量涡流损耗加上焦耳加热,因为电流在5A的步骤中增加到55A的步骤,其中12个不可切换的平行电路12个白炽灯泡的电流,每个电缆悬挂在八个92cm长度的直径的八个92cm长度管道中的直径。 8.81厘米。涡流被测量为带有红外相机的管子上产生的热量。将该数据推断为HV传输电平,以确定管道直径以否定损耗。然后注入DC电流。相应地,通过O&G专家的反馈进行了缆绳系统的设计。在这个行业的最前沿,正在使用HDPE管道,这将是完美的HV传输,而无需担心涡流或拱形。

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