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地球的磁极正从加拿大快速地移动到西伯利亚,科学家们也很困惑。_我的网站

上海滩

一 | 科学家们不知道为什么地球磁场运动得很快。

二 |     

Illustration: Liu Xiangya/GT
    Illustration: Liu Xiangya/GT
Recent media reports have questioned whether a natural gas plant built to power an Amazon data center project in Texas could become the largest climate polluter in the US. The controversy, whatever the eventual outcome, offers a reality check for America's artificial intelligence (AI) drive. 
It exposes a growing contradiction: The US is racing to expand its AI capabilities, yet its protectionist trade policies are making it harder and more costly to access some of the clean-energy technologies needed to sustain that expansion. This raises a broader question: Can an energy-intensive AI race afford the costs of renewable energy protectionism?
The US is entering a new era of rising electricity demand. Data centers, the backbone of the AI economy, are emerging as one of the fastest-growing sources of power consumption. Much of that demand is still being met by fossil fuels: The International Energy Agency reports that natural gas supplies more than 40 percent of the electricity used by data centers in the US, making it their largest source of power. 
So, it's not surprising that the expansion of data centers has raised concerns over their environmental impact and the pressure they could place on local power systems and electricity bills. A Gallup survey conducted in March found that seven in 10 Americans opposed the construction of AI data centers in their local area, including 48 percent who strongly opposed such projects.
The findings point to a broader challenge for the US: The race to develop AI is increasingly becoming a race to meet growing energy needs. Addressing this challenge will require more than advances in computing technology; it will also depend on an energy system capable of delivering large amounts of reliable, affordable and cleaner power. That, in turn, will require faster development and broader deployment of clean-energy technologies, from solar power to energy storage.
Yet in the clean-energy sector, the US has increasingly relied on protectionist trade measures that limit access to cost-competitive products from global markets. The country has placed greater emphasis on expanding domestic manufacturing capacity, but rebuilding entire clean-energy supply chains at home is a costly and time-consuming process. Even if expanded domestic production is achieved, it is likely to come at a higher cost, making the deployment of renewable technologies more expensive and potentially slower.
The solar industry offers a clear illustration of this policy direction. The US has continued to expand trade barriers in the sector. Reuters reported that the US government announced on Thursday a series of price floors and a 15 percent tariff on products made from polysilicon, a raw material used in solar panels.
The challenge lies in the limited scale of the US polysilicon industry. Reuters reported that the country has two polysilicon factories. Against this backdrop, relying on domestic polysilicon production while restricting access to imports runs counter to the goal of expanding solar power in the US. The country risks creating barriers that ultimately constrain its own access to the global supply chains needed for growth.
The pressing issue for the US is the speed at which new power demand is emerging. The expansion of data centers is creating electricity needs that cannot wait for domestic clean-energy capacity to develop gradually. Global supply chains can provide the scale and speed required in the near term. By narrowing access to these sources, the US risks turning clean-energy policy into a drag on the infrastructure needed for its AI race.
The US has placed AI high on its economic and technological agenda. The outcome of this race will matter greatly, as financial markets are also watching whether America can turn its AI efforts into commercial success.
This leaves the US with a difficult choice: Can it afford the cost of clean-energy protectionism while racing to build AI infrastructure? The answer may be no. Trade barriers that limit access to competitive renewable technologies could ultimately become a constraint on the AI expansion that Washington is seeking to accelerate.
The author is a reporter with the Global Times. [email protected]

三 | 研究人员说,磁极正在从加拿大“滑翔”到西伯利亚。磁北极的运动是显而易见的,世界各地的研究人员都渴望更新世界地磁模型。

四 | 世界地磁模型是所有现代导航系统的基础,包括海军导航系统和手机上的谷歌地图。最新的世界地磁模型,于2015年出版,相信到2020年可以使用。

五 | 但研究人员说,磁场变化如此之快,他们必须提前修改世界地磁模型。世界地磁模型原定于1月15日更新,但由于美国政府的关闭,时间不得不推迟到1月30日。

六 | 地磁场在不断变化。小科学普及:地磁极(来自维基百科)人类首先根据地球两极的方向来定义磁铁的南北极,而不是相反:磁铁的北极是指磁针自由旋转时转向地磁北极的末端。

七 | 由于两块磁铁的南北极相互吸引,这就意味着地磁场的北极实际上是地磁场的南极(即地磁场线指向地球中心的地方)。南北磁极一般位于地极附近,但其位置随地质时间的变化而变化较大。这种变化太慢,无法干扰罗盘的日常使用。

八 | 然而,平均每几十万年就会发生一次地磁反转,即南北极突然(与地质时间尺度相比)相互交换。

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Published on:11:44:33


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