首页> 外文会议>International conference on nuclear engineering >EVALUATION OF TENDON ANCHORAGE ZONE STRESSES IN PRESTRESSED CONCRETE NUCLEAR CONTAINMENT USING DETAILED FINITE ELEMENT ANALYSIS
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EVALUATION OF TENDON ANCHORAGE ZONE STRESSES IN PRESTRESSED CONCRETE NUCLEAR CONTAINMENT USING DETAILED FINITE ELEMENT ANALYSIS

机译:使用详细的有限元分析评估预应力混凝土核壳中的肌腱锚固区应力

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Nuclear containments serve the critical function of providing a leak proof boundary for containment of radiation in nuclear power plants. The containments are, generally, steel, reinforced concrete or prestressed concrete depending upon the diameter and internal design pressure. Prestressed concrete containments are used in large nuclear containments with significant design internal pressure. In these situations, the externally applied prestressing serves to counter internal design pressure due to LOCA (loss of coolant accident) and other accident loads thus reducing the required thickness and reinforcement demand. The prestressing tendons are placed in sheathing within the concrete. After the concrete achieves its required strength, the tendons are stretched and locked off against the ends of the concrete called anchorage zones. These anchorage zones are thus subjected to substantial compressive and splitting stresses and need to be properly designed and detailed. Since anchorage zones are the primary location of the prestressing force transfer to concrete, they experience very large and localized bearing and splitting stresses which can have significant safety and structural consequences for the containment integrity. Simple analysis based on strut-and-tie model is generally used for design of prestressed concrete anchorage zones. But because of the stress concentrations and potential impact to structural integrity, it is prudent to utilize detailed finite element method to verify and/or substantiate the results from simple analysis. The finite element (FE) analysis of tendon anchorage zone requires a refined mesh in order to capture the geometry of details surrounding tendons. This paper presents a detailed and practical finite element model used to perform a comprehensive stress analysis of an anchorage zone of a large post-tensioned containment. Both local and general anchorage zones are evaluated. A fictitious case of tendon anchorage zone is established as an example case based on typical parameters of nuclear plants. A 3D finite element model is then developed using ANSYS Version 13.0, in which the effect of tendon sleeve / sheathing into concrete is modeled explicitly. This paper also discusses anchorage zone analysis approaches in various state-of-the-practice codes and standards using hand calculations. The result of finite element analysis are compared with analyses using various hand calculation approaches. In particular, importance of adequate reinforcement design and detailing in anchorage regions is discussed based on the stress profiles from FE analysis and compared with hand calculation methods. It is concluded that a detailed finite element evaluation of anchorage regions is necessary to develop a level of confidence required for ensuring safety and integrity of nuclear containments. The FE modeling also serves as verification for results from simple hand calculation methods.
机译:核遏制是提供核电站辐射泄漏泄漏边界的关键功能。通常,钢,钢筋混凝土或预应力混凝土,取决于直径和内部设计压力。预应力混凝土遏制用于大型核遏制,具有重要的内部压力。在这些情况下,外部应用的预应力是由于基因座(冷却剂事故的损失)和其他事故载荷的内部设计压力,从而降低所需的厚度和增强需求。预应力肌腱置于混凝土内的鞘中。在混凝土达到所需的强度之后,肌腱被拉伸并锁定在混凝土的末端,称为锚地区。因此,这些锚固区受到大量压缩和分裂应力,并且需要进行适当的设计和详细。由于锚地区域是预应力转移到混凝土的主要位置,因此它们经历了非常大而局部的轴承和分裂应力,这可能对遏制完整性具有显着的安全性和结构后果。基于Strut-and-Tie模型的简单分析通常用于预应力混凝土锚固区的设计。但由于应力集中和对结构完整性的潜在影响,利用详细的有限元方法来验证和/或从简单分析中证实结果。肌腱锚固区的有限元(Fe)分析需要精制网格,以捕获周围肌腱细节的几何形状。本文介绍了一种详细且实用的有限元模型,用于对大型后张紧壳体的锚固区进行全面的应力分析。评估本地和一般的锚地区。基于核植物典型参数建立了肌腱锚固区的虚拟案例。然后使用ANSYS 13.0开发3D有限元模型,其中肌腱套/护套进入混凝土的效果是明确建模的。本文还讨论了使用手工计算的各种实践代码和标准的锚地区分析方法。将有限元分析的结果与使用各种手计算方法进行分析进行比较。特别地,基于来自Fe分析的应力谱并与手计算方法相比,讨论了足够的加强设计和细节在锚固区域中的重要性。得出结论,锚地区域的详细有限元评估是制定确保核遏制安全性和完整性所需的置信度。 FE模型还可用于验证简单手动计算方法的结果。

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