Ensuring Energy Safety of the Biological Separation Shop

V. Kim, Y. Kashin, M. Khristoforov
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Abstract

The article considers ways to solve the problem of ensuring the energy safety of separation workshops of biological industries using the example of the Armavir Biofabrika PKP. The existing power limit does not allow increasing output. At the same time, a sufficient level of electricity supply at the existing facilities of the biofabric will allow to double the output of finished products practically. You can solve this problem using additional or redundant power sources, as well as high-efficiency electrical equipment. One solution to the problem may be to use the developed synchronized axial two-way contactless wind-solar generator and separator for polydisperse liquid systems. The designed generator will transform wind and solar energy into AC electricity, while it can be synchronized with an external three-phase AC system. Separator uses inevitable heat loss of asynchronous motor to preheat separated product.
确保生物分离车间的能源安全
本文以Armavir Biofabrika PKP为例,探讨了如何解决生物工业分离车间的能源安全问题。现有的功率限制不允许增加输出。与此同时,在现有的生物织物设施中,足够的电力供应水平将使成品的产量增加一倍。您可以使用额外或冗余的电源以及高效的电气设备来解决这个问题。解决这一问题的一种方法可能是使用已开发的同步轴向双向无接触风力-太阳能发电机和多分散液体系统的分离器。设计的发电机将风能和太阳能转化为交流电,同时它可以与外部三相交流系统同步。分离机利用异步电动机不可避免的热损失对分离产物进行预热。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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