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1. CN1139990 - Energy generation and generator by means of anharmonic stimulated fusion

Office China
Application Number 95191401.4
Application Date 27.01.1995
Publication Number 1139990
Publication Date 08.01.1997
Grant Number 1127735
Grant Date 12.11.2003
Publication Kind C
IPC
G21B 1/00
GPHYSICS
21NUCLEAR PHYSICS; NUCLEAR ENGINEERING
BFUSION REACTORS
1Thermonuclear fusion reactors
CPC
G21B 3/00
GPHYSICS
21NUCLEAR PHYSICS; NUCLEAR ENGINEERING
BFUSION REACTORS
3Low temperature nuclear fusion reactors, e.g. alleged cold fusion reactors
Y02E 30/10
YSECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
30Energy generation of nuclear origin
10Nuclear fusion reactors
Applicants Siena Tech. Research Univ.
锡耶纳技术研究大学
Inventors Francesco. Piantelli
弗朗西斯科·皮亚内特利
Agents WANG SHEN
中国国际贸易促进委员会专利商标事务所
Priority Data SI94A000001 27.01.1994 IT
Title
(EN) Energy generation and generator by means of anharmonic stimulated fusion
(ZH) 利用非调谐受激聚变的能量发生和发生器
Abstract
(EN)
A process of energy generation and an energy generator by means of anharmonic stimulate fusion of hydrogen isotopes absorbed on metal comprising a charging step on a metallic core (1) of a quantity of hydrogen isotopes H and D; a heating step in which said core (1) is heated (9) to reach a temperature higher than Debye's temperature of the material composing the core; a startup step wherein a vibrational stress is produced with a rise time less than 0.1 seconds which activates a nuclear fusion of said hydrogen isotopes; a stationary step during which it is exchanged (3,5) the heat produced by the H+D nuclear fusion reaction which occurs in the core (1) because of a steady keeping of a coherent multimodal system of stationary oscillations.

(ZH)

利用吸附在金属上的氢同位素的非调谐受激聚变的能量发生过程和能量发生器,包括:装料步骤,在金属芯料(1)上装填一定量的氢同位素H和D;加热步骤,其中上述芯料(1)被加热(9)到一个高于组成芯料的材料的德拜温度的温度;起动步骤,其中以小于0.1秒的上升时间产生一个振动应力,该应力激活上述氢同位素的核聚变反应;稳定步骤,在该步骤期间,由于稳定振荡的相干多模系统的平稳保持,可以交换(3、5)在芯料(1)中发生的H+D核聚变反应产生的热量。