首页> 外文会议>ASME Pressure Vessels and Piping Conference >DYNAMIC ANALYSIS AND DESIGN METHODS FOR COMBUSTION TURBINE EXHAUST SILENCERS EMPLOYING ACOUSTICAL BAFFLES
【24h】

DYNAMIC ANALYSIS AND DESIGN METHODS FOR COMBUSTION TURBINE EXHAUST SILENCERS EMPLOYING ACOUSTICAL BAFFLES

机译:采用声学挡板的燃烧汽轮机排气消音器的动态分析与设计方法

获取原文

摘要

Combustion turbines are frequently used because they provide the most power in the smallest footprint and their modular design makes them an economical choice. These machines are used across all land-based industries as well as marine applications. The exhaust system must perform its basic function of conducting exhaust gases, which can be as high as 1250° F (675°C), safely away from the adjacent equipment and workers, and mitigate the exhaust noise under a wide range of requirements and conditions. In addition, new requirements limit shell temperatures and exhaust leakage to prevent fire or explosion of fuel gas that may leak from equipment (ATEX). This paper presents a review of the analytical processes used in the development of a silencer system to achieve optimal performance metrics. These systems are typically comprised of parallel baffles for a wide range of conditions including aero-acoustical performance, system pressure and high flow rates, thermal stresses, environmental conditions (ocean, seismic and wind), flow-induced vibration, corrosion, and fatigue - design life analysis. The specific requirements of the baffle design will be discussed through a specific case study relative to typical rectilinear (parallel) baffles used in many installations, including land-based power generation plants (Figure 1), and offshore platforms (Figure 2). This paper will discuss the analytical methods used to address these challenges via a case study. A combination of static, vibration-pulsation and dynamic structural analysis with specific attention to the seismic analysis of the parallel baffles used in skirt and structural steel supported vessels, as well as acoustical design and flow modeling techniques are used to evaluate the design options.
机译:常用燃烧涡轮机经常使用,因为它们为最小的占地面积提供最大的功率,并且它们的模块化设计使它们成为经济的选择。这些机器用于所有陆地行业以及海洋应用。排气系统必须执行其导电废气的基本功能,可以高达1250°F(675°C),安全地远离相邻的设备和工人,并在广泛的要求和条件下减轻排气噪音。此外,新要求限制壳温度和排气泄漏,以防止火灾或燃油可能泄漏的燃料气体(ATEX)。本文介绍了用于开发消音器系统以实现最佳性能度量的分析过程的审查。这些系统通常由平行挡板组成,用于各种条件,包括航空声性能,系统压力和高流速,热应力,环境条件(海洋,地震和风),流动振动,腐蚀和疲劳 - 设计生活分析。挡板设计的具体要求将通过相对于许多装置中使用的典型直线(并行)挡板的特定情况研究讨论,包括陆基发电厂(图1)和海上平台(图2)。本文将讨论用于通过案例研究解决这些挑战的分析方法。用特异性关注裙部和结构钢支撑血管的平行挡板的地震分析的静态,振动脉动和动态结构分析的组合,以及声学设计和流量建模技术来评估设计选项。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号