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POWER PLANT

Started by Hypercom, December 20, 2009, 09:24:06 AM

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Hypercom

Ciao

A series of projects overunity, closed loop, self sustaining, using the principle of the lever ...
The main components are a motor, a generator, a flywheel, a special mechanical configuration that allows you to take advantage of leverage ...

US2007284886
US2008309290
US2002158536
US2009273190
WO0199264
FR2855676
FR2738687
FR2657474
FR2461394
BE438189
IT1204115

Hypercom

Hypercom

Ciao

EXPERIMENT USING LEVER PRINCIPLE (overunity, closed loop, self sustaining)

US2009273190  Asymmetric hydraulic press electric generator

Abstract:

The asymmetric hydraulic press electric generator is a device that converts mechanical energy to electrical energy using hydraulic pressure. It employs the principle that force acting on a small area can create a much larger force by virtue of hydrostatic pressure and that a large amount of energy can be carried by a small flow of highly pressurized fluid. Given that the device does not use any natural resources to produce electric power, it is a radically new method of generating clean, renewable energy. This innovative technology aims to change our current destructive cycle of energy production into a constructive cycle that benefits all.
Claims:

1. The asymmetric hydraulic press electric generator is a device that converts mechanical energy to electrical energy using hydraulic pressure. The device comprises:a) a hydraulic system which converts electric power into hydraulic power; andb) a generating system which generates electric power,whereby said generating system returns a portion of electrical energy to power said device and supplies another portion to power other applications.
Description:

BACKGROUND

[0001]This invention relates to systems of energy generation that can be used for sustaining and improving the world's productive energy capacity. By using an asymmetric hydraulic press electric generator to generate energy, this invention stands as an alternative way of generating energy, apart from other forms of energy generation including the use of fossil fuels, nuclear energy, water and wind. The asymmetric hydraulic press electric generator employs some of the theory of hydraulics, whereby force acting on a small area can create a much larger force by virtue of hydrostatic pressure and by the principle that a large amount of energy can be carried by a small flow of highly pressurized fluid. Once the device has been activated, it becomes self-sufficient, producing more energy than is expended. This self-sufficient characteristic of the invention enables it to serve an astonishing array of functions: it can power large forms of transportation; it can be used as the sole source of energy for residential homes; it can be assembled into energy farms, similar to today's wind farms, and as an energy source for entire communities. The invention is thus a low-cost and highly efficient means of addressing the ever-expanding demand for energy in modern society. Accordingly, the invention provides a solution to many energy-related social and environmental problems such as pollution, global warming, the current energy shortage and even inflation due to rising energy costs. The ultimate goal of the invention is to bring about a more environmentally sound and prosperous future.

DETAILED DESCRIPTION

[0014]Since FIG. 1 shows a mechanical analogy: Given that the asymmetric hydraulic press electric generator essentially comprises part A and part B, then we only need to show that the force produced by part A is greater than the force needed by part B to generate electric power. We can therefore use a simple algebraic inequality to illustrate this relationship: [0015]First, we can observe that a-b is either positive, zero, or negative. Another way to say the same thing is to note that given two real quantities a and b, only one of the following is true:

[0015]a>b a=b a<b [0016]Second, let us apply this statement to the amount of force generated or needed by the subsystems of the asymmetric hydraulic press electric generator, where a can be the amount of torque exerted by the hydraulic system, and b can be the amount of torque needed by the generating system. In our case, a-b is positive, or,

[0016]a-b>0, [0017]therefore,

[0017]a>b [0018]This is also to say that a can neither be equal to, nor lesser than, b. [0019]Let us then conduct a theoretical EXPERIMENT USING LEVER PRINCIPLE, to prove the inequality a>b. [0020]The experiment is as follows: Given a 6 m-long lever, the fulcrum divides the lever into a 5 m-long arm and a 1 m-long arm. A 3000-kg object is placed on the 1 m-arm of the lever. The question is: How much force must be applied on the 5 m-arm to balance the 3000-kg object? [0021]According to the principle of mechanical advantage, we know that
[0021]F(B)/F(A)=L(A)/L(B), [0022]where F is the force, L is the lever arm, A is the longer arm and B is the shorter arm. Thus,
[0022]F(A)=F(B).times.L(B)/L(A)=(3000 kg.times.1 m)/(5 m) 600 kg. [0023]And since we know that
[0023]w=mg,

Read more: http://www.faqs.org/patents/app/20090273190#ixzz0bgYvQh91

http://v3.espacenet.com/publicationDetails/biblio?DB=EPODOC&adjacent=true&locale=en_EP&FT=D&date=20091105&CC=US&NR=2009273190A1&KC=A1

Hypercom





Hypercom

@ All

More than 10 years that analyze projects secured, I can assure you that I learned a lot from the work of these researchers, clearly I have considered the work right or overunity projects where it speaks of an electric motor coupled to an alternator through a particular mechanical configuration with a driver and sometimes a reduction gear.

The first positive results came with teslag1 fact, high yields of slightly above unity in a configuration ironless in resonance conditions.
The first impression was that high performance was achieved by the complexity of the phenomena that develop in the vicinity of magnetic resonance in rotating seats, far from being easy to analyze without tools.

There are about a hundred projects that I have analyzed, the right one finally arrives, it clearly speaks of the principle of leverage and its importance in the production of electric power. Incredible I have said too much easy ... yet so, analyzing the best translations from other projects I have found many other clear references to the principle of the lever second-class.

These principles are known for more than a century, I analyzed the projects dated 1900 so it is logical to think that Tesla was the first to achieve self-sustaining overunity generators based on the principle of the lever second-class, there are clear references to the importance of flywheel which greatly increases system performance, talking about the energy yield ratio energy expenditure. In these sets modified and optimized it comes to cop10, COP15.

http://v3.espacenet.com/searchResults?bookmarkedResults=true&submitted=true&DB=EPODOC&locale=en_gb&IA=Chiappini+Goffredo&sf=q&FIRST=1&CY=gb&LG=en&&st=IA&kw=Chiappini+Goffredo&Submit=SEARCH&=&=&=&=&=

Hypercom

Hypercom


Hypercom

Updates.

TeslaG1 was the first positive result, however, things were not clear, because with engines identical in electrical characteristics at the same rpm, but different in size, changing the returns ... Reply ... it changes the size of the motor arm, ie, the radius of the point of thrust engine for the same load resistance, engines of different sizes are rightly the difference with a different electrical power consumption.

These are my conclusions at this point I decided to build a small prototype, an engine plate coupled to a generator, if the system is self-perpetuating experimentation will post on the forum.

The problem is finding the right components for an assembly groped ... I considered several solutions, motor plate ... could fit the brushless rotating case fan computer or model airplanes, especially the dedicated kit all'overcloking with speed control potentiometer, the returns on these types of engines are high 80/90%
then we might as flat motor having a motor with the following characteristics: Voltage 12Vdc motor, motor power 12Watt, Maximum engine speed 6000 rpm, adjustable Power consumption max. 1A engine, engine performance about 10watt.

Alternator or generator ... Here things become more complex, the success of this little experiment to play right here on the generation of electric power ... the alternator or generator must have a body content as possible in their diameter, development must be on their length axis of rotation, the yield must be high, the generator produces directly
Vdc, Vac from the alternator produces correct and straighten, I personally have some success with an alternator ironless DIY TeslaG1 precisely.

The alternative is to take a small generator and replace the internal combustion engine with a brushless motor with rotating case of electrical and mechanical characteristics suitable size.

Start_up ... The system must first be brought to speed with auxiliary power, battery or network. At this point you can turn the alternator, in the case of our little experiment, if goodwill is powered by battery, alternator, after appropriate adjustment, recharge the battery more than sufficiency to ensure the continuous cycle (closed- loop) - (self-sustaining).

Hypercom