V. Githaguru

Research

Tilt and Swivel Vertical Axis Wind Turbine for High Speed Regions on or Off Shore. Model Rotor(s) Experiments Lead as Instructive Scaffold to the Prototype

Article January 23, 2026

To harness high velocity and fluctuating wind, this new tilt & swivel type vertical axis rotor, as an original idea is investigated. If the conventional anchoring of its top end with guy wires to the ground is simply done away with, the rotor axle becomes a cantilever; requires it to be more rigid, strong and hence heavy. Instead, the lower end of the axle is modified with fulcrum and the rotor is kept upright with the counterweights. Hence the whole balanced assembly of rotor and generator located on opposite ends, can easily tilt about the turnnion, in tune with the wind speed. Counter weight to the rotor can include additional dead weights, along with the generator and gear train. By automatic tilting, the rotor can work through and up to higher cut-out wind speed. Change of wind direction causes the axle to swivel and align for the continued smooth rotor operation. Hence both the tilt and swivel freedom of the vertical axle/axis, renders a complete new design of the wind turbine for high speed regions up to 50 m/s. Heralding of this new design and the realization of its prototype is the outcome of this experimental study presented herewith. In the offshore installation, if the generator and counter weight assembly is to operate under water, then the buoyancy and fluid damping effects merit consideration. In essence, let the tons of steel, wood and all that, harness the high wind in such ease and grace; appearing as if the daffodils toss and turn in the breeze!

Hip Simulator ‘Trifemur’ Poised for Marathon Tests, can Direcly Guage the Wear-Life Span of Regular Implants and Compare with that of the Dimpled Ball Types

Article January 23, 2026

Trifemur after augmentation proves as a holistic wear tester, both as ball-on-socket and ball-on-triplate type configuration. Unaccelerated but continuous testing of implants & lubricants just for few months, can characterize their decades long service limited by either wear depth or wear volume. This has to be tested and ascertained, to rank the Trifemur as a standard comparator. As if an island of stability is sighted in the sea of chaos, two pilot experiments confirmed the feasibility of reaching to the practical range of linear wear depth. Those experimental details and results using Trifemur are presented here.

A Rubric Report 2023 Ṙ The Profile of a Post Doctoral Research

Article January 23, 2026

Pioneering experiments with promising results and ironically lay unpublished is paradoxical. But that is what had happened to him as the another, years ago, in 2013. Yet, the continuing relevance of the ideas and similar pursuit by others, prompted him now in 2023, to publish his “post doctoral” works; as it knowledge matters and its chronology too! His doctoral thesis, Anna University (2008) was on “Trifemur” a wear tester for hip joint prostheses, his patented invention. Subsequently, he augmented it as a versatile tribometer for the orthopaedic implants. Dimpled femur ball, spinal discs, special coating and lubricants could get unacceleratedly test-measured for their natural wear-life span. Pilot test runs on shells and discs proved successful, it was ready to test dimpled femur ball as well.