Ir al contenido principal

Entradas

Generate Electric Current with radioactive material, without electric generator.

Ideas published on March 5, 2019 Nuclear power plants generate electricity with water vapor, the water passes through the radioactive rods heated by the reaction of the vicinity of these and this steam spins an electric generator. This I have always seen as a technical aberration, it is like turning on a forest to cook a barbecue. It is a waste of energy and an intolerable waste of resources. Seen and considering that the radioactive waste generated by a plant lasts between 300 and 500 years of radioactive activity, the treatment given to this waste, is to accumulate it in special rooms and nobody knows what to do with it. For this reason an idea occurred to me, the radioactive material generates three types of waves, these are high energy that can be used. Piezoelectric elements have the virtue that if they are subjected to a mechanical impact or an electric field, they generate electricity. The alpha waves are a piece of nuclei ejected from the center of the a...

Generar Corriente Eléctrica con material radioactivo, sin generador eléctrico.

Ideas publicada el 5 de marzo 2019 Las centrales nucleares generan electricidad con vapor de agua, el agua pasa por las barras radioactivas  calentándose por la reacción de las proximidades de estas  y este vapor hace girar un generador eléctrico. Esto siempre lo he visto como una aberración técnica, es como encender un bosque para cocinar un asado.Es un desperdicio de energía y un malgasto de recursos intolerable. Visto y considerando que el desperdicio  radiactivo que genera una central dura entre 300 y 500 años de actividad radioactiva ,el tratamiento que se da a estos residuos, es  acumularlo en recintos especiales y nadie sabe qué hacer con ello. Por esta razón se me a ocurrido una idea, el material radiactivo genera tres tipos de ondas,, estas son de alta energía que se pueden utilizar. Los elementos piezoeléctricos tienen la virtud de que si son sometidos a un impacto mecánico o a un campo eléctrico generan electricidad. Las ondas alfa son ped...

How to minimize the effects of tsunami (Quantifying. Ideas evolve)

Idea published on September 1, 2015 In an attempt to offer a solution to control the problem of reducing the flow of water of a tsunami. I quantified, with the few data that I tell, the tsunami that hit Japan in 2011. A approximate solution of the system that idee, I repeat approximate. The average wave that hit Japan approximately 40 meters high and therefore must have been about 80 meters base. Calculating the volume of water in a section of 3.3 km, traveling at a speed of 30 km / h taking the wave as a prism. Use the formula volume of prism = 0.43 * 6400 * 3300 = 9,081,600 cubic meters. Whereas the nozzle has a diameter of 40 meters, the wave would take about 5 seconds to travel the diameter. The nozzle consists of 6 suction engines measure 10 meters high and 10 meters in diameter so cilíndrica. Each motor can move a volume of 785 cubic meters. A 1,000 r.p.m. 6 engines displace a second 4710 meters cúbicos.En 5 seconds displace 23,550 cubic meters. Electric mo...

Como minimizar los efectos de un tsunami (Las ideas evolucionan.Cuantificando)

Idea publicada el 1 de septiembre 2015 En un intento de ofrecer,  una solución, para controlar el problema de disminuir el flujo de agua de un tsunami. He  cuantificado, con los escasos datos con los que cuento, del tsunami que afecto a Japón en 2011.Una solución aproximada del sistema que idee, repito aproximada. La ola que azoto Japón media aproximadamente, unos 40 metros de alto y por ende tendría unos 80 metros de base. Calculando el volumen de agua en  una sección de 3,3 km, que se desplazaba a una velocidad de 30 km/h  y tomando a la ola como un prisma  . Utilizo la formula volumen de prisma =0.43*6400*3300=9.081.600 metros cúbicos. Considerando que la tobera tiene un diámetro de 40 metros, la ola tardaría unos 5 segundos en recorrer el diámetro. La tobera consta de 6 motores de succión con una medida de 10 metros de alto por 10 metros de diámetro de forma cilíndrica.Cada motor puede desplazar un volumen de 785 metros cúbicos . A 1000 r.p...

System emergency landing of a plane with airbag

Idea posted January 22, 2013 Usually emergency aircraft in the descent forced landing gear used to pose the aircraft on the ground. The side wheels located on the wings at the bottom, are not designed to provide mechanical strength and shed their wings, allowing the wings do not break spilling fuel. The method I designed airbag, allow a landing with landing gear or without them. In figure 1 we see the image plane side, which is shown in the airbag bags located in the lower plane. When deployed and form a protection, which can absorb the impact force. The Kevlar be forged bags this is a very impact resistant cloth, and inflated with pressure obtained turbine or a compressor powered by the power turbine. Figure 2 shows the distribution of the airbag in the lower plane. I propose that the bag is divided into three parts: rear, center and front. I also propose the location of a bag in the wings. In figure 3 and figure 4 can be seen on the location of cutting the airbag,...

Sistema aterrizaje de emergencia de un avión con airbag

Idea publicada 22 de enero 2013 Habitualmente en caso de emergencia los aviones en el descenso forzado, utilizan el tren de aterrizaje para posar el avión en tierra. Las ruedas laterales ubicadas en las alas en su parte inferior, están diseñadas para no ofrecer resistencia mecánica y desprenderse de las alas, permitiendo que las alas no se quiebren derramando combustible. El método de airbag que he diseñado, permitirá hacer un descenso con tren de aterrizaje o sin ellos. En la figura 1  vemos la imagen lateral del avión, en la cual se muestra las bolsas de airbag ubicadas en la zona inferior del avión. Cuando se despliegan y forman una protección, la cual permite absorber la fuerza de impacto. Las bolsas se fabricarían de Kevlar esta es una tela muy resistentes al impacto, y se inflan con presión obtenida de las turbinas o bien de un compresor activado por la potencia de la turbina. En la figura 2 vemos la distribución de los airbag en la zona inferior del avión. Propo...

Control of forest fires

Idea published June 1, 2012 This system allows sectoral forest fire propagation. While not completely extinguished the fire, can protect the forest heritage, preserving autochthonous species in different sectors of the forest. This also protects the person as hikers, hunters or firefighters who are trapped in an extreme situation surrounded by fire. The towers can be of two types, one with self-sufficiency (Figure 1) with limited supply and other (Figure 2). Latter are reponerian water in the rainy season through transporting helicopters, which would move the tanks to a lake or dam for replacing them. Each tower would have a computer which would control the temperature measurement sensors, a webcam, wifi and a wireless antenna. All electric and electronic systems will be powered by a battery, these are recharged via solar panels. At the bottom will have a button for emergencies that inform the tower location to rescuers. All sensor systems are controlled by computer, with a pro...