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SOLID FUEL MODEL FOR CALIBRATION OF RADIO ISOTOPE ASH METER

机译:放射性同位素灰分仪校准的固体燃料模型

摘要

the invention u043eu0442u043du043eu0441u0438u0442u0441u00a0 to nuclear technology, in particular to the study or analysis of radiation methods, for example, with the help of gamma u0438u0437u043bu0443u0447u0435u043du0438u00a0, to u043du043au0440u0435u0442u043du0435u0435 receivable for the preparation of samples u0434u043bu00a0 u0438u0441u0441u043bu0435u0434u043eu0432u0430u043du0438u00a0 and u0433u0440u0430u0434u0443u0438u0440u043eu0432u043au0438 radioisotope u0437u043eu043bu043eu043cu0435u0440u043eu0432 solid fuels based on the registration of u0440u0430u0441u0441u0435u00a0u043du043du043eu0433u043e u0438u0437u043b u0443u0447u0435u043du0438u00a0. the stability values of the characteristics of the fuel.the model of solid fuel comprises a container with a material with known u0437u043du0430u0447u0435u043du0438u00a0u043cu0438 bulk density n and ash content ad material model implemented in the form of a plate, and if the plates u043fu0440u0435u0441u0441u043eu0432u0430u043du043du043eu0433u043e graphite density c, which uniformly with step l, chosen from u0443u0441u043bu043eu0432u0438u00a0 given in the description, are u043eu0442u0432u0435u0440u0441u0442u0438u00a0 diameter d, oprah u0434u0435u043bu00a0u0435u043cu044bu043c of u0441u043eu043eu0442u043du043eu0448u0435u043du0438u00a0, cited in the description.inside holes made tubes of u0430u043bu044eu043cu0438u043du0438u00a0, who introduced the rods of iron, and the size of their chosen from u0443u0441u043bu043eu0432u0438u00a0 equality of mass ratios as u043fu043eu0433u043bu043eu0449 u0435u043du0438u00a0, and u0440u0430u0441u0441u0435u00a0u043du0438u00a0 u0430u043bu044eu043cu0438u043du0438u00a0 iron and the relevant factors of fuel ash natural secondary chemical compositionwith the model of the solid fuel is 5 - 7 u0434u043bu0438u043du0430u043c distance of gamma quantum in the u0437u043eu043bu043eu043cu0435u0440u0430 with rich layer, and the u043du0435u043du0430u0441u044bu0449u0435u043du043du044bu043c layer range of t u043eu043bu0449u0438u043d models of solid propellant is the range of real u0438u0437u043cu0435u0440u0435u043du0438u00a0 u0441u043bu043eu00a0 material thickness measurement. 1, table 2).
机译:发明,例如核技术,特别是辐射方法的研究或分析,例如在伽马的帮助下。 u0443 u0447 u0435 u043d u0438 u00a0,至 u043d u043a u0440 u0435 u0442 u043d u0435 u0435可接收用于制备样品的样品 u0434 u043b u00a0 u0438 u0441 u0441 u043b u043b u0435 u0434 u043e u0432 u0430 u043d u0438 u00a0和 u0433 u0440 u0430 u0434 u0443 u0438 u0440 u043e u0432 u043a u0438放射性同位素 u0437 u043e u043b u043 u0435 u0440 u043e u0432固态燃料基于 u0440 u0430 u0441 u0441 u0431 u0435 u00a0 u043d u043d u043d u043e u0433 u043e u0438 u0437 u043b u0443 u0447 u0435 u043d u0438 u00a0。固体燃料模型包括一个容器,该容器中的材料具有已知的 u0437 u043d u0430 u0447 u0435 u043d u0438 u00a0 u043c u0438堆密度n和灰分ad材料模型以板的形式实施,并且如果板 u043f u0440 u0435 u0441 u0441 u043e u043e u0432 u0430 u043d u043d u043e u043e u0433 u043e石墨密度c与步骤l一致,从描述中给出的 u0443 u0441 u043b u043e u0432 u0438 u00a0中选择的是 u043e u0442 u0432 u0435 u0440 u0441 u0442 u0438 u00a0直径d,奥普拉 u0434 u0435 u043b u0441 u043e u043e u043e u0442 u043d u043d u043e u0448 u0435 u043d u043d u0438 u00a0的 u00a0 u0435 u043c u044b u043c,在内部孔中制成了 u0430 u043b u044e u043c u0438 u043d u0438 u00a0,他们介绍了铁棒,以及从 u0443 u0441 u043b u043e u043e u0432 u0438 u00a0中选择的质量比等于 u043f u043e u0433 u043b u043e u0449 u0435 u043d u0438 u00a0,和 u0440 u0430 u0441 u0441 u0435 u00a0 u043d u0438 u00a0 u0430 u043b u044e u043c u0438 u043d u0438 u00a0铁和燃料灰分天然次级化学成分的相关因素及其模型固体燃料为 u0437 u043e u043b u043e u043c u043c u0435 u0440 u0430具有丰富层的γ量子距离中的5-7 u0434 u043b u0438 u043d u0430 u043c u0435 u043d u0430 u0441 u044b u0449 u0435 u043d u043d u044b u043c固体推进剂的t u043e u043b u0449 u0438 u043d模型的层范围是实际 u0438 u0437 u043c的范围 u0435 u0440 u0435 u043d u0438 u00a0 u0441 u043b u043e u00a0材料厚度测量。 1,表2)。

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