首页> 外国专利> METHOD FOR PREPARING ENERGY IN COMPOUND SYNTHESIS REACTIONS, FUEL FOR COMPOUND SYNTHESIS, METHOD FOR PRODUCING FUEL FOR COMPOUND SYNTHESIS, AIR-REACTIVE ENGINE FOR COMPOUND SYNTHESIS

METHOD FOR PREPARING ENERGY IN COMPOUND SYNTHESIS REACTIONS, FUEL FOR COMPOUND SYNTHESIS, METHOD FOR PRODUCING FUEL FOR COMPOUND SYNTHESIS, AIR-REACTIVE ENGINE FOR COMPOUND SYNTHESIS

机译:合成反应中能量的制备方法,用于合成化合物的燃料,用于合成化合物的燃料制备方法,用于合成的空气催化发动机

摘要

1. A method of obtaining the kinetic energy of a fluid working fluid from the nuclear energy of a substance, characterized in that a cold target of a fluid fuel component in a linear mode is bombarded with a stream of accelerated multiply charged ions of another fuel component (in the range of ~ 0.5-4.9 MeV), with the formation compound nuclei (nuclear molecules), the most probable decay channels of which are exothermic; how the flow of the working fluid with a high increment of kinetic energy (in the range of ~ 5-20 MeV / ion) is obtained - compound synthesis; In the zone of the highest increment of kinetic energy, the method of ponderomotive braking of the ionized working fluid by the MHD generator is used, which increases the pinch density of hot ions (and their breeding), and also simultaneously generates electricity to power the accelerator - the ion source. 2. Substance - nuclear fuel, characterized in that it consists of frequent stable nuclides of elements I-II rows of the Periodic Table, adapted for the method according to claim 1.3. A substance according to claim 2, characterized in that it is a heavy methane - fuel for the method according to claim 1 (a source of hot - accelerated ions C and D), which is effectively applicable in combination with a target -N (nitrogen of air). A method for producing a substance according to claim 3, characterized in that heavy-carbon methane is preliminarily extracted from CH, for example, by multiple gas separation, and then obtained (at n- 4) by isotopic enrichment in a concentrated solution of heavy water with intermediate drying of the gas fraction. A jet engine device, characterized in that it is a nuclear jet engine based on the method according to claim 1; consists of: linear electron accelerator, in the whole
机译:1.一种从物质的核能获得流体工作流体的动能的方法,其特征在于,用另一种燃料的加速多电荷离子流轰击线性模式下的流体燃料组分的冷目标。组分(在〜0.5-4.9 MeV范围内),带有形成的化合物核(核分子),其最可能的衰变通道是放热的;如何获得具有高动能增量(在〜5-20 MeV /离子范围内)的工作流体流-化合物合成;在动能增量最大的区域中,使用了通过MHD发生器对离子化工作流体进行自动制动的方法,该方法增加了热离子的夹点密度(及其繁殖),同时还产生了电能以驱动加速器-离子源。 2.物质-核燃料,其特征在于它由元素周期表中元素I-II行的频繁稳定的核素组成,适用于根据权利要求1.3的方法。 3.根据权利要求2的物质,其特征在于它是用于根据权利要求1的方法的重甲烷燃料(热加速离子C和D的源),其可有效地与目标-N(氮)组合使用空气)。 4.根据权利要求3所述的物质的制造方法,其特征在于,例如通过多次气体分离,预先从CH中提取重碳甲烷,然后通过在N 2的浓溶液中进行同位素富集而得到(n = 4)。重水,中间干燥气体部分。 7.一种喷气发动机装置,其特征在于,它是根据权利要求1所述的方法的核喷气发动机。组成:整体线性电子加速器

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