YANMING WEI

YANMING WEI

Greater Ottawa Metropolitan Area
3K followers 500+ connections

About

I am aiming to power world with clean energy originated from the sun-cooking-earth! As a polymathy renewable energy senior researcher, my R&D domain is transdisciplinary & dynamically changing.

Currently there are at least 2 patent-pending inventions waiting for commercialization or pilot project.

1. Wei-Trump Powertrain, i.e. Automatic Gearless Digitostat Fluid Power Continuously Variable Regenerative Transmission
Features: High efficient & wide adjustable switched-mode hydraulic oil circuit with extreme broad ratio of torque & rev speed; Embedded cheap hydraulic energy storage & recovery for regenerative brake; Flexible deployment on chassis; Performance superior than any hybrid powertrain.
Even the transmission alone can be adopted in many other domains, especially it is the common gateway to commercialize all non-electrochemical energy storage utilities, e.g. flywheel, compressed air, pressure retarded osmosis, etc.
Details=> http://kiwaho.com/ck

2. Big pseudo wetland based solar-osmosis tandem power station with multiple benefits
Smart retardation for extracting osmotic power is provided by my proprietary Wei-Trump powertrain.
In principle, solar energy is "smuggled" into concentrated subsaturated saltwater, simultaneously water is distilled in tropic zones or iced in cold zones, then new transformed kinetic energy is arrested i.e. recovered by pressure retarded forward osmosis process.
Details=> http://kiwaho.com/eb

Now seek seeding investor, also one engineer with strong STEM background as a co-founder.

Merge & Acquisition option:
Open to full time job offer as role of team leader or CTO in continuation of my current R&D, as well as, surrendering my inventory intelligence properties under fair agreement with envisioned employer or parent entity. Can relocate anywhere if necessary.

Other cyber existence (omitted http://):
kiwaho.com
www.researchgate.net/profile/Yanming_Wei2
vixra.org/author/yanming_wei
twitter.com/kiwaho
blog.sciencenet.cn/u/kiwaho

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Experience

  • Kiwaho Laboratory of Energy and Ecology Inc.

    Mountain, Ontario, Canada

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    All over the world

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    Toronto, Canada Area

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    Zhuhai, Guangdong, China

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Education

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Publications

  • Which Elements Can be Candidates of Concatenating ββ Decay Nuclear Fuel?

    ResearchGate

    With the catalysis of focused neutrinos and other special means, some of those 2β isotopes can be outstood for fuel, provided it becomes possible for 2 sequential events of concatenating β1β2 with total energy Q(β1) + Q(β2) positive balance. This research paper at least proposes molybdenum 100Mo as promising candidate.

    See publication
  • Shutter-like fluid driven motor and tide power harvest system

    ResearchGate

    Why we have to be addictive to rotary turbine for tide or wind energy harvest? Perhaps we are not smart enough to find a new way. Now I propose a rectangular cross section turbine that works in reciprocation mode to harvest energy from any flowing fluid. In a sense, fluid flows in similar way of electric DC (Direct Current), but reciprocal motion of device’s ram behaves in similar way of AC (Alternating Current), thus a DC-AC mechanic inverter is needed. Of course, inverse utilization of same…

    Why we have to be addictive to rotary turbine for tide or wind energy harvest? Perhaps we are not smart enough to find a new way. Now I propose a rectangular cross section turbine that works in reciprocation mode to harvest energy from any flowing fluid. In a sense, fluid flows in similar way of electric DC (Direct Current), but reciprocal motion of device’s ram behaves in similar way of AC (Alternating Current), thus a DC-AC mechanic inverter is needed. Of course, inverse utilization of same mechanism renders an AC-DC mechanic rectifier, i.e. an exotic pump.

    See publication
  • Publication Preview Source Dielectrodynamics and applications -- Part one Dielectric blade comb piston mechanic-electric bi-direction converter

    ResearchGate

    The electric vs. mechanic bi-directional power conversion application has been traditionally and asymmetrically favoring at magnetic element as energy caching and buffering bridge, e.g. the electric motors and generators that are also abstracted as electromechanical devices. The theory behind those omnipresent electromechanical devices or equipments is electrodynamics. Based on recent fast development of high energy density dielectric materials, my inventions are to be a game changer: let…

    The electric vs. mechanic bi-directional power conversion application has been traditionally and asymmetrically favoring at magnetic element as energy caching and buffering bridge, e.g. the electric motors and generators that are also abstracted as electromechanical devices. The theory behind those omnipresent electromechanical devices or equipments is electrodynamics. Based on recent fast development of high energy density dielectric materials, my inventions are to be a game changer: let electrical field alone to take the heavy duty of electromechanical utilities, and let “dielectrodynamics” replace electrodynamics. Of the most importance is the key limitless high voltage generator, which can cover full gamut of voltages from volts to kilovolts (KV), megavolts (MV), even gigavolts (GV), and what we need, is just to provide necessary space occupancy and mechanic work acting on dielectric blade comb-like piston. Either motor or generator can be re-invented with this core dielectrodynamic module.

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  • Energy density calculation formula for decay based nuclear fuel or battery

    ResearchGate

    This paper presents a convenient calculation formula of energy density for nuclear fuel or nuclear battery that outputs energy by whatever decay. Also a relative formula is deduced for easy comparison between different fuels. At last, with the convenient formula, the energy density comparison and possibility of applying different isomer beta fuels are proactively calculated and aggressively discussed.

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  • System and modality to generate power from liquid jet in heat engine and more

    USPTO

    Human used to get power from gas expansion in heat engine. Extraction of mechanic work from gaseous expansion is always low efficient, because circa 70% energy is hidden in the exhausted vapor in the form of latent heat and rejected or dumped out of cycle because the slow condensation may choke mass conservative looping. As liquid is hard to be compressed, power transmission can be reasonably assumed lossless, so harvesting mechanic power from liquid flow is high efficient. But historically it…

    Human used to get power from gas expansion in heat engine. Extraction of mechanic work from gaseous expansion is always low efficient, because circa 70% energy is hidden in the exhausted vapor in the form of latent heat and rejected or dumped out of cycle because the slow condensation may choke mass conservative looping. As liquid is hard to be compressed, power transmission can be reasonably assumed lossless, so harvesting mechanic power from liquid flow is high efficient. But historically it is rarely considered for how to form a powerful liquid flow in a typical gas-liquid dual-phase co-existed thermodynamic system, such as the most used Rankine-cycle heat engine. A new method or say Wei heat engine is invented that is based on a new defined Wei second class thermodynamic cycle. Such a new method converts thermal energy into high speed liquid flow during non-equilibrium condensation, though not too much efficient, as well as it jailbreaks the efficient limit of ideal Carnot cycle in an alternative way because the rejected heat is automatically reused to heat base liquid so as to reduce the consumption of heat source. Based on the said liquid power heat engine, a series of modalities are disclosed, featuring a kaleidoscope of free energy, non-Stirling style external combustion, existing powerplant improving modification, immersed intra-cavitation combustion even with a variety of co-existing ammonia synthesis, and flue gas process with capture of combustion water vapor and carbon dioxide and NOx and sulfur dioxide.

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