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A CONCEPT OF INTERMEDIATE HEAT EXCHANGER FOR HIGH-TEMPERATURE GAS REACTOR HYDROGEN AND POWER COGENERATION SYSTEM

机译:高温燃气反应器制氢和热电联产系统中间换热器的概念

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摘要

A new conceptual design of intermediate heat exchanger (IHX) is proposed for application to the gas turbine high temperature reactor system (GTHTR300C) which is being developed by Japan Atomic Energy Agency (JAEA). The GTHTR300C cogenerates hydrogen using the iodine-sulfur (IS) hydrogen production process and electric power using gas turbine. The IHX is used to transport high temperature heat from the nuclear reactor to the hydrogen plant. The IHX proposed in this paper is a horizontal design as opposed to conventional vertical design. Therefore, JAEA investigated the advantage of the horizontal IHX and the economic evaluation when scaling up from conceptual design of high temperature engineering test reactor (HTTR) / IHX to GTHTR300C. To meet the performance requirement, both thermal and structural designs were performed to select heat transfer tube length, tube bundle diameter, insulation thickness, and the length of shell support in a horizontal pressure vessel. It is found that the length of the heat exchanger tube can be shortened and the superalloy-made center pipe structure can be eliminated, which results in reducing the quantity of construction steel by about 30%. Furthermore, the maximum stress concentration in the tubes is found to be significantly reduced such that the creep strength to withstand continuous operation is extended to 40 years, equaling the nuclear reactor life time, without replacement.
机译:提出了一种新的中间热交换器(IHX)的概念设计,以应用于日本原子能机构(JAEA)正在开发的燃气轮机高温反应堆系统(GTHTR300C)。 GTHTR300C使用碘硫(IS)制氢工艺产生氢气,并使用燃气轮机发电。 IHX用于将高温热量从核反应堆传输到制氢厂。本文提出的IHX是一种水平设计,与传统的垂直设计相反。因此,当从高温工程试验堆(HTTR)/ IHX的概念设计扩展到GTHTR300C时,JAEA研究了水平IHX的优势和经济评估。为了满足性能要求,同时进行了热设计和结构设计,以选择水平压力容器中的传热管长度,管束直径,隔热厚度和壳体支撑长度。发现可以缩短热交换器管的长度,并且可以消除由超合金制成的中心管结构,这导致建筑用钢的量减少了约30%。此外,发现管中的最大应力集中显着降低,因此承受连续运行的蠕变强度可延长至40年,等于核反应堆的使用寿命,无需更换。

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