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Fusion: a true challenge for an enormous reward

机译:融合:巨大挑战带来的真正挑战

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摘要

Nuclear physics shows that energy can be released from both fission of heavy nuclei and fusion of light nuclei. Steady progress shows that fusion — an important additional option for energy production in the future — promises to be a clean and safe solution for mankind’s long-term energy needs with minimal environmental impact. A source of energy which would be inexhaustible, inherently safe and environmentally friendly, is this not a marvellous prospect? Nuclear fusion, a possible candidate for this role, has been the energy source of our Sun and the stars in the universe for billions of years. This process requires temperatures of tens of millions of degrees, so extremely high and foreign to our daily experience that it seems out of reach. Nevertheless, these extremely high temperatures are routinely realised in several laboratories all over the world, and since the early 1990s, tens of MW fusion power have been released from fusion reactions. We are witnessing the birth of a new technology destined to meet the gigantic future energy needs of mankind with minimal impact on the environment.
机译:核物理学表明,重核裂变和轻核聚变都可以释放能量。稳步取得的进展表明,聚变是未来能源生产的重要附加选择,它有望成为一种清洁安全的解决方案,能够满足人类长期能源需求,并且对环境的影响最小。一种取之不尽,用之不竭的安全和环保能源,这不是一个奇妙的前景吗?核聚变(可能扮演这一角色的候选人)数十亿年来一直是我们太阳和宇宙中恒星的能源。这个过程需要几千万度的温度,这对于我们的日常经验来说是极高的和陌生的,似乎无法实现。然而,这些极高的温度在世界各地的数个实验室中都是常规实现的,并且自1990年代初以来,聚变反应已释放出数十兆瓦的聚变能。我们目睹了一种新技术的诞生,该新技术旨在满足人类巨大的未来能源需求,并且对环境的影响最小。

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