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2SGen 固态发电机项目详细资料 - 图文

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  • 2026/1/19 18:01:53

magnet is not the source of the excess of energy. The ferromagnetic core is used on the highly non linear portion of the MH curve (where the core permeability drops quickly)

Shorter the clock pulse (low DTC) is, lower the energy spent for the magnetization process will be.

The 2SGen is not a transformer: The excess of energy tapped on its output comes from the magnetic material itself (during the demagnetization process). The volume of the ferromagnetic core used is important to get more power: greater the volume of the core is, higher the power at the output will be.

The pulse period must be greater than the time required for the magnetization/demagnetization process and this is fully dependent of the performance of the magnetic core used.

The best tuning is done when there is no change in the measured DC input power while the output coil is loaded.

Don't forget that energy of the magnetization pulse is the cost to be paid for obtaining the excess energy from demagnetization

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得到额外能量的一些重要关键点:

输出线圈必须完全与输入线圈 EM耦合(不是互感),因此,这也是为什么把输入线圈和输出线圈成90度放置的原因;

较短的时钟脉冲(低占空比)减少了磁化过程所需的能量。

2SGen不是一个变压器:它是从磁材料本身提取额外能量(在退磁过程中)。铁氧体磁芯有助于得到较多功率,磁环越大,输出功率也越大。

脉冲周期必须大于磁化/退磁过程所用时间而这个依赖于所用磁环材质的特性。

做到输出功率给负载而输入功率无变化需要好好调整。

不要忘记磁化脉冲的能量要为从退磁过程获得额外能量买单。

Now, with the 2SGen V5, I am able to power higher power leds panels... 现在,用 2SGen第五版,我能使更高功率的Led板点亮; ...

提高输出功率很容易的,只需提高驱动功率并减少输出线圈的内阻即可。

rumia:我只是用的电脑上开关电源的那个大圈磁芯,将上面的线圈串接,没有另外绕线圈,把原来小外甥不要的小钕磁放中间,只能放进一点,感应线圈是拆的一个12V工频变压器的初级。太简陋上个图没啥意思,

绕线我想有个方法,有多根漆包线,很细的那种,并联绕,一来降低电阻,二来能不留空隙,增强磁场强度。能提高效率

其实这个设备阐述了一种新的发电方法,如果熟悉了原理,基于此原理构造大的固态发电机应该不是难事;想当初,法拉第基于电磁感应构造的发电机是多么的小,而现在100kw的发电机都是小儿科;

S2Gen Episode 7: Measuring the ratio between the Demagnetization energy and the Magnetization energy(测量退磁能量和磁环能量的比值)

In the previous test (episode 6), we have seen that the collected demagnetization energy of the core is greater, in some cases, than the magnetization energy spent, according to the Nikolay E. Zaev paper. The purpose of this new test is to measure the ratio between the demagnetization energy and the magnetization energy, this will give us a very good idea of the perfomances of the 2SGen device.

To conduct this test, I have used the 2SGen v5 setup with the neodymium magnet placed in the middle of the toro?dal coil, see below. 在前面的测试中(第六节),我们看到在退磁阶段搜集的能量是很大的,有些测试中甚至超过磁化输入的能量,参考Nikolay E. Zaev的论文。这节的新测试要求测量退磁和磁化阶段的功率比值,测试结果显示2Sgen设备的性能有想象空间。做这个测试,我用2SGen第五版的配置把钕磁铁放在磁环中间,见下图。

29#

发表于 2012-4-12 15:45:01 |只看该作者 本帖最后由ruima于 2012-4-12 16:00 编辑

2012-4-12 15:41:24 上传 下载附件 (87.01 KB)

As you may see in the scope picture above, the voltages measured across the loads are pure DC (yellow and light blue curves)

你可以从上面示波器图片中看出,负载两端的电压是纯直流(黄色和淡蓝色曲线)

2012-4-12 15:41:28 上传 下载附件 (98.8 KB)

l = ((Vdem^2)/10000) / ((Vmag^2)/10000) = ((35.2^2)/10000) / ((9.5^2)/10000) = 13.7 It is interesting to notice that N. Zaev has found a l = 16.3 with a Permalloy 81 NM core

Here an interesting paper to read :\from Nikolay E. Zaev - New Energy Technologies Issue #1 (4) Jan-feb 2002

有趣的是N.Zaev用81纳米的坡莫合金磁芯得到了 l = 16.3 的测试结果; 这儿有一篇有趣的论文 “热环境能到电能的感应转换”Nikolay E Zaev,《新能源科技》Issue #1 (4) Jan-feb 2002

2SGen Episode 8: 2SGen running simulation, towards more output power 2SGen 运行仿真,向更多的输出功率前进

You will find below a 2SGen v5 simulation with FEMM with a Nanoperm M-059 core with the same setup used in the real working prototype.

下图你将看到用FEMM软件对用纳米M-059磁芯的磁环和实际原型机相同配置的2SGen第五版进行仿真。

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magnet is not the source of the excess of energy. The ferromagnetic core is used on the highly non linear portion of the MH curve (where the core permeability drops quickly) Shorter the clock pulse (low DTC) is, lower the energy spent for the magnetization process will be. The 2SGen is not a transformer: The excess of energy tapped on its output comes from the magnetic material

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