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Possible power generation with nature's high-efficiency technology

机译:利用自然界的高效技术发电

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The rapidly growing fuel consumption in engines and turbine that power the world's transportation vehicles and power-generation plants will nearly exhaust the world's supply of petroleum by the end of the next century. These engines and turbines run at high heat-input temperatures because their efficiency is limited by the Carnot cycle. Muscles used for propulsion by animals are not limited in efficiency by the Carnot cycle, so we see dolphins getting 3,000 miles of travel from a food quantity that contains the energy equivalent of one gallon of gasoline. Leaves on plants capture the energy in sunlight to extract carbon from carbon dioxide in the air, and hydrogen form water, to manufacture carbohydrates. Scientists and engineers studying these processes are amazed by the computing power and data storage required to make these processes work. For example, a tiny grape seed contains the data and structural technology required for quickly constructing the plant's fuel-producing leaves and the structures that support them. Even the stiff thorn that discourages intruders from entering the grape bush has an effective design. The data stored in the seed specifies the color of the grape plant's blossoms, commands the production of the sugar-containing fluid that goes into the grapes, and even the data content of the next-generation seeds in the globules of each grape berry. In this report, we explore energy-conversion processes that nature has developed in plants and animals. We explore the possibility of adapting them into techniques that reduce our consumption of petroleum fuels.
机译:驱动世界运输车辆和发电厂的发动机和涡轮机中燃料消耗的迅速增长,到下个世纪末将几乎耗尽世界石油的供应。这些发动机和涡轮机在高热量输入温度下运行,因为它们的效率受到卡诺循环的限制。卡诺循环不限制动物用于推进动物的肌肉的效率,因此我们看到海豚从一种能量相当于一加仑汽油的食物中走了3,000英里。植物上的叶子会吸收阳光中的能量,从空气中的二氧化碳中提取碳,然后从水中生成氢,从而生产碳水化合物。研究这些过程的科学家和工程师对使这些过程起作用所需的计算能力和数据存储感到惊讶。例如,一粒微小的葡萄籽包含快速构建植物产生燃料的叶子及其支撑结构所需的数据和结构技术。即使是阻止入侵者进入葡萄灌木丛的坚硬刺也具有有效的设计。种子中存储的数据指定葡萄植物的花朵的颜色,命令进入葡萄的含糖液体的产生,甚至每个葡萄浆果的小球中下一代种子的数据内容。在本报告中,我们探讨了自然界在动植物中发展的能量转换过程。我们探索了将它们应用到减少石油燃料消耗的技术中的可能性。

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