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DESIGN AND OPTIMIZATION OF WASTE HEAT RECOVERY UNIT USING CARBON DIOXIDE AS COOLING FLUID

机译:以二氧化碳为冷却液的废热回收装置的设计与优化

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This paper describes design and optimization of a Waste Heat Recovery Unit (WHRU) for a power cycle which uses CO_2 as a working fluid. This system is designed for offshore installation to increase gas turbine efficiency by recovering waste heat from the exhaust for production of additional power. Due to severe constraints on weight and space in an offshore setting, it is essential to reduce size and weight of the equipment to a minimum. Process simulations are performed to optimize the geometry of the WHRU using different objective functions and thermal-hydraulic models. The underlying heat exchanger model used in the simulations is an in-house model that includes the calculation of weight and volume for frame and structure for the casing in addition to the thermal-hydraulic performance of the heat exchanger core. The results show that the for a set of given process constraints, optimization with respect to minimum total weight or minimum core weight shown similar results for the total installed weight, although the design of heat exchanger differs. The applied method also shows how the WHRU geometry can be optimized for different material combinations.
机译:本文介绍了使用CO_2作为工作流体的功率循环的废热回收单元(WHRU)的设计和优化。该系统专为海上安装而设计,可通过从废气中回收余热来产生额外的动力来提高燃气轮机的效率。由于在海上环境中对重量和空间的严格限制,因此必须将设备的尺寸和重量减小到最小。使用不同的目标函数和热工液压模型进行过程仿真,以优化WHRU的几何形状。在模拟中使用的基础热交换器模型是一个内部模型,除了热交换器核心的热工液压性能外,还包括计算框架的重量和体积以及套管的结构。结果表明,对于一组给定的过程约束,尽管热交换器的设计有所不同,但对最小总重或最小芯重的优化对于总安装重量显示出相似的结果。应用的方法还显示了如何针对不同的材料组合优化WHRU几何形状。

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