提高涡轮膨胀式发电厂性能的设计和技术支持的领域和阶段

M. Tkachuk, M. Novikov, M. Tkachuk, A. Grabovskiy, Glib Pakki, Hanna Tkachuk, Serhii Podrieza, Roman Dereviankin
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摘要

本文介绍了一种提高涡轮膨胀机发电站性能的设计和技术支持综合方法。通过对涡轮膨胀机发电站发展现状的分析,可以确定传统方法在很大程度上已经用尽了改善其技术特性的可能性。此外,为了确保改善这些特性,有必要采取联合设计和技术措施,而不是孤立的设计或技术措施。为了采用这种方法,我们采用了通用参数建模的方法。同时,通过将设计参数和技术参数相结合,扩大了为涡轮膨胀发电站寻找合理技术解决方案的参数空间。参数空间的扩大使得提高最终解决方案的效率成为可能。这种解决方案无法仅通过设计或技术措施来实现。所开发的方法以一系列求解阶段的形式实施。首先,研究涡轮膨胀机发电厂的气体动力学、传热和传质以及发电的工作过程。其次,优化技术操作,以加强这些发电厂的要素。第三,开发具有更好技术特性的涡轮膨胀发电站实际样品。总体而言,这些阶段是在已开发的通用参数方法基础上协调进行的,使涡轮膨胀机元件的耐用性提高了 25-40%,并确保减速器的效率达到 86%。关键词: 涡轮膨胀机发电站;涡轮装置;离散-连续加固;通用参数;设计和技术支持;技术特点
本文章由计算机程序翻译,如有差异,请以英文原文为准。
AREAS AND STAGES OF DESIGN AND TECHNOLOGICAL SUPPORT FOR ENHANCED PERFORMANCE OF TURBO-EXPANDER POWER PLANTS
The paper describes an integrated approach to the design and technological support of enhanced performance of turbo-expander power plants. An analysis of the current state of development of turboexpander power plants has made it possible to establish that traditional approaches have largely exhausted the possibilities of improving their technical characteristics. Moreover, a situation is emerging where, in order to ensure the improvement of such characteristics, it is necessary to involve not isolated design or technological measures, but joint design and technological measures. To implement this approach, the method of generalized parametric modeling is used. At the same time, by combining design and technological parameters, the parametric space in which to search for rational technical solutions for turbo-expander power plants is expanded. This expansion of the parametric space makes it possible to increase the efficiency of the final solution. Such a solution cannot be achieved through design or technological measures alone. The developed approach is implemented in the form of a sequence of solved stages. First, it is a study of the working processes of gas dynamics, heat and mass transfer, and power generation in turboexpander power plants. Secondly, it is the optimization of technological operations for strengthening the elements of these plants. Thirdly, it is the development of real samples of turbo-expander power plants with improved technical characteristics. In general, these stages, which are carried out in a coordinated manner on the basis of the developed generalized parametric approach, made it possible to increase the durability of turboexpander elements by 25-40 % and ensure the efficiency of the detander at the level of 86 %. Keywords: turbo-expander power plant; turbine installation; discrete-continuous strengthening, generalized parameter, design and technological support; technical characteristics
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