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在巴西亚马逊地区,内格罗河与索利蒙伊斯河交汇处的能量,这两条河是亚马逊河的支流。

Energy at the Junction of the Rivers Negro and Solimões, Contributors of the Amazon River, in the Brazilian Amazon.

作者信息

Beluco Alexandre, de Souza Paulo Kroeff

机构信息

Instituto de Pesquisas Hidráulicas, Universidade Federal do Rio Grande do Sul, Av. Bento Gonçalves 9500, P.O. Box 15029, 91501-970 Porto Alegre, RS, Brazil.

出版信息

Int Sch Res Notices. 2014 Oct 29;2014:794583. doi: 10.1155/2014/794583. eCollection 2014.

Abstract

The Negro and Solimoes rivers join in front of the Brazilian city of Manaus to form the Amazon River. This "meeting of the waters" is a natural phenomenon of great aesthetic beauty that has been the focus of attention of researchers all over the world in various scientific fields. The waters of the Negro are darker and warmer, while the waters of the Solimoes are lighter and cooler. These waters have very different characteristics and remain without mixing, flowing side by side for several miles. Some reports indicate a temperature gradient between the waters of the order of 6°C, which can be used in conjunction with very high flow rates delivered by the two rivers, with a heat engine operating on a thermodynamic cycle to provide electricity. This review paper identifies this energy resource and presents a preliminary assessment of the potential for power generation. A realistic assessment of the potential points to an available power of about 1 GW. It is clear that further studies are needed to accurately assess the available thermal gradient and its variation over time, to move forward in the design of the power converter, and to establish an appropriate location for a power plant.

摘要

内格罗河和索利蒙伊斯河在巴西马瑙斯市前交汇,形成了亚马逊河。这种“河水交汇”是一种极具美学美感的自然现象,一直是世界各地不同科学领域研究人员关注的焦点。内格罗河的水颜色更深且温度更高,而索利蒙伊斯河的水颜色更浅且温度更低。这些河水具有非常不同的特性,并且互不混合,并排流淌数英里。一些报告表明,两条河流水温之间的梯度约为6°C,结合两条河流极高的流量,可利用热力循环运行的热机来发电。这篇综述论文识别了这种能源,并对发电潜力进行了初步评估。对潜力的实际评估表明可用功率约为1吉瓦。显然,需要进一步研究以准确评估可用的热梯度及其随时间的变化,推进功率转换器的设计,并确定发电厂的合适选址。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a7f9/4897248/630e4d40178e/ISRN2014-794583.001.jpg

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