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PHASE-B PRE-SIMULATION USING BORON AND GADOLINIUM AS POISON IN THE MODERATOR SYSTEM FOR WOLSONG-1

机译:WOLSONG-1调制器系统中以硼和ADO为毒物的B相预模拟

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The Wolsong-1 (W-l) Phase-B pre-simulations were carried out in preparation for tests to be conducted for the restart of the reactor after a major refurbishment project that included replacement of the pressure tube. These pre-simulations for Wolsong-1 Phase-B differ from those in the past that were performed for the Wolsong-1,2,3,4 tests in that these tests use the WIMS/DRAGON/RFSP-1ST code suite for verification of the tests and gadolinium instead of the traditional PPV/MULTICELL/RFSP code system and boron as poison in the moderator system. The use of gadolinium is deemed not to have domestically accumulated experience gained from the previous Phase-B tests. Thus, it is appropriate to conduct a study in order to gain a correct understanding and interpretation of potential differences in test results stemming from using gadolinium rather than boron. Although the calibration of the reactivity device will not be noticeably different using boron and gadolinium at a constant moderator temperature, the temperature dependency of the neutronic behavior due to the presence of gadolinium in the moderator system might be pronounced. The results of the pre-simulations using gadolinium revealed that the moderator temperature reactivity coefficients indeed showed significant differences in comparison with those with boron. In order to secure the validity of the analysis results, the newly acquired WIMS/DRAGON/RFSP-IST code suite was verified against the W-2,3,4 Phase-B test results. The results of the new code suite verifications revealed some overall improvements in accuracy; justification of the use of the code can be claimed for the validation of the W-1 Phase-B test results.
机译:进行了Wolsong-1(W-1)B期预仿真,以准备进行重大翻新工程(包括更换压力管)后重新启动反应堆的测试。 Wolsong-1 B期的这些预仿真与过去对Wolsong-1、2、3、4测试进行的仿真不同,因为这些测试使用WIMS / DRAGON / RFSP-1ST代码套件来验证测试和g代替了传统的PPV / MULTICELL / RFSP代码系统,而硼则成为了主持人系统中的毒药。 of的使用被认为没有从先前的B期测试中获得的国内累积经验。因此,进行研究以正确理解和解释使用using而不是硼引起的测试结果中的潜在差异是适当的。尽管在恒定的调节剂温度下使用硼和g,反应装置的校准不会有明显不同,但是由于调节剂系统中存在the,中子行为的温度依赖性可能会很明显。使用g的预模拟结果表明,与硼相比,慢化剂的温度反应系数确实显示出显着差异。为了确保分析结果的有效性,针对W-2、3、4 B相测试结果验证了新获得的WIMS / DRAGON / RFSP-IST代码套件。新代码套件验证的结果表明,准确性总体上有所提高。可以要求使用该代码来证明W-1 B期测试结果。

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