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Modeling Magnetic Fields from a DC Power Cable Buried Beneath San Francisco Bay Based on Empirical Measurements

机译:基于经验测量的埋在旧金山湾下的直流电源电缆中的磁场建模

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摘要

The Trans Bay Cable (TBC) is a ±200-kilovolt (kV), 400 MW 85-km long High Voltage Direct Current (DC) buried transmission line linking Pittsburg, CA with San Francisco, CA (SF) beneath the San Francisco Estuary. The TBC runs parallel to the migratory route of various marine species, including green sturgeon, Chinook salmon, and steelhead trout. In July and August 2014, an extensive series of magnetic field measurements were taken using a pair of submerged Geometrics magnetometers towed behind a survey vessel in four locations in the San Francisco estuary along profiles that cross the cable’s path; these included the San Francisco-Oakland Bay Bridge (BB), the Richmond-San Rafael Bridge (RSR), the Benicia-Martinez Bridge (Ben) and an area in San Pablo Bay (SP) in which a bridge is not present. In this paper, we apply basic formulas that ideally describe the magnetic field from a DC cable summed vectorially with the background geomagnetic field (in the absence of other sources that would perturb the ambient field) to derive characteristics of the cable that are otherwise not immediately observable. Magnetic field profiles from measurements taken along 170 survey lines were inspected visually for evidence of a distinct pattern representing the presence of the cable. Many profiles were dominated by field distortions unrelated to the cable caused by bridge structures or other submerged objects, and the cable’s contribution to the field was not detectable. BB, with 40 of the survey lines, did not yield usable data for these reasons. The unrelated anomalies could be up to 100 times greater than those from the cable. In total, discernible magnetic field profiles measured from 76 survey lines were regressed against the equations, representing eight days of measurement. The modeled field anomalies due to the cable (the difference between the maximum and minimum field along the survey line at the cable crossing) were virtually identical to the measured values. The modeling yielded a pooled cable depth below the bay floor of 2.06 m (±1.46 std dev), and estimated the angle to the horizontal of the imaginary line connecting the cross-sectional center of the cable’s two conductors (0.1143 m apart) as 178.9° ±61.9° (std dev) for Ben, 78.6°±37.0° (std dev) for RSR, and 139.9°±27.4° (std dev) for SP. The mean of the eight daily average currents derived from the regressions was 986 ±185 amperes (A) (std dev), as compared to 722 ±95 A (std dev) provided by Trans Bay Cable LLC. Overall, the regressions based on fundamental principles (Biot Savart law) and the vectorial summation of cable and geomagnetic fields provide estimates of cable characteristics consistent with plausible expectations.
机译:跨湾电缆(TBC)是±200千伏(kV),400 MW 85公里长的高压直流(DC)埋入式输电线路,将位于加利福尼亚州匹兹堡和位于旧金山河口下方的加利福尼亚州旧金山(SF)连接起来。 TBC与各种海洋物种的迁徙路线平行,包括绿色st鱼,奇努克鲑鱼和硬头鳟鱼。 2014年7月和2014年8月,使用一对淹没式几何磁力计进行了一系列广泛的磁场测量,这些磁力计拖曳在旧金山河口四个位置的勘测船后,沿着与电缆路径交叉的剖面分布;其中包括旧金山-奥克兰湾大桥(BB),里士满-圣拉斐尔大桥(RSR),贝尼西亚-马丁内斯大桥(本)和圣帕勃罗湾(SP)中不存在桥梁的区域。在本文中,我们采用基本公式来理想地描述直流电缆的磁场与背景地磁场矢量求和(在没有其他干扰环境场的来源的情况下),以得出电缆的特性,否则这些特性将不会立即产生。可观察的。沿视线检查了沿170条测量线获得的测量结果的磁场剖面,以发现代表电缆存在的独特图案。许多剖面图主要是由桥梁结构或其他水下物体引起的与电缆无关的场变形引起的,而电缆对场的影响是不可检测的。由于这些原因,拥有40条调查线的BB无法获得可用数据。不相关的异常可能比电缆异常大100倍。总体而言,根据等式对从76条测量线测得的可识别磁场分布进行了回归,代表了八天的测量。由于电缆造成的建模场异常(电缆交叉处沿测量线的最大场和最小场之差)实际上与测量值相同。通过建模,得出池底低于2.06 m(±1.46 std dev)的合并电缆深度,并且估计与连接电缆两个导体的横截面中心(相距0.1143 m)的假想线水平的夹角为178.9。 Ben的°±61.9°(std dev),RSR的78.6°±37.0°(std dev)和SP的139.9°±27.4°(std dev)。从回归得出的八个每日平均电流的平均值为986±185安培(A)(标准偏差),而Trans Bay Cable LLC提供的是722±95 A(标准偏差)。总体而言,基于基本原理(Biot Savart法则)的回归以及电缆和地磁场的矢量求和可提供与合理预期一致的电缆特性估计。

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  • 期刊名称 other
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  • 年(卷),期 -1(11),2
  • 年度 -1
  • 页码 e0148543
  • 总页数 21
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  • 入库时间 2022-08-21 11:13:15

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