Engineering Technology: Statics & Dynamics
Crosswind poses a significant and unavoidable threat to flight safety. Aircraft with elliptical annular wings have been proposed to possess inherent advantages for operations in strong cross…
Engineering Technology: Statics & Dynamics
In the context of modern aviation, aerodynamic efficiency and reduced fuel consumption are critical priorities. Nowadays, modern airliners travel relatively close to the speed of sound (Mach…
Engineering Technology: Statics & Dynamics
Aircraft wings are typically optimized for limited operating conditions and rely on hinged control surfaces to modify aerodynamic performance. This engineering research investigated whether…
Engineering Technology: Statics & Dynamics
To address the limitations of existing ankle-foot rehabilitation devices in dynamic adaptability, response speed, and control accuracy, presents an upgraded intelligent rehabilitation system…
Engineering Technology: Statics & Dynamics
Aerospike engines eliminate the 30–40% efficiency loss from conventional bell nozzles, yet no aerospike has achieved full operational flight due to extreme thermal loads on the central spike…
Engineering Technology: Statics & Dynamics
Electrohydrodynamic ( EHD ) propulsion, also known as ionic wind, is capable of producing thrust with no moving components. Using emitter and collector electrodes, EHD thrusters ionize and a…
Engineering Technology: Statics & Dynamics
This project aims to develop compact robots that can be easily assembled and deployed, potentially in swarms. An autonomous mobile robot based on a Tensegrity structure is developed. The Ico…
Engineering Technology: Statics & Dynamics
A self-developed, open-source High-Temperature Superconducting (HTS) Applied-Field Magnetoplasmadynamic Thruster (AF-MPDT) platform for deep-space propulsion combines potential for high Isp…
Engineering Technology: Statics & Dynamics
Oil well blowouts are a major safety and economic problem in drilling operations, often caused by delays in decision-making during critical situations. In many cases, engineers require signi…
Engineering Technology: Statics & Dynamics
Every day, there are over 40,000 crosswind landings occurring. Pilots use sideslip or crabbing methods to land in crosswinds. Both techniques require pilots to use ailerons to bank the airpl…
Engineering Technology: Statics & Dynamics
20% of total energy consumption is used to merely overcome friction (Holmberg and Erdemir, 2017). Friction comes from all places, with new rolling bearings accounting for over 420 terawatt h…
Engineering Technology: Statics & Dynamics
Turbulence, one of the biggest issues in aerospace engineering, is categorized as the chaotic airflow and the rapid changes in airflow. The wing response to that flow of air is imperative in…
Engineering Technology: Statics & Dynamics
Current methods of metal additive manufacturing (AM) typically require high-power laser or arc technology to melt metal into desired forms (powder bed fusion and wire arc AM, respectively).…
Engineering Technology: Statics & Dynamics
Traditional figure skating jump-assist devices often require manual coach operation and lack adaptability to varying athlete heights and weights. This project developed a universal kinematic…
Engineering Technology: Statics & Dynamics
The purpose of this investigation is to utilize slime mold’s cellular intelligence in the optimization of the United States Interstate road network. Specifically, Physarum polycephalum will…
Engineering Technology: Statics & Dynamics
In payload delivery and humanitarian aid, parachutes often suffer due to instability and drift. Autorotation offers potential solutions, yet it’s treated as an emergency condition rather tha…
Engineering Technology: Statics & Dynamics
Monitoring inland waters such as rivers, lakes, and coastal regions is essential for understanding environmental processes and detecting pollution. Conventional measurement buoys are station…
Engineering Technology: Statics & Dynamics
Dilution refrigerators are used in advanced physics systems such as quantum computing because they can cool materials to temperatures near absolute zero. A key component of these systems is…
Engineering Technology: Statics & Dynamics
This study investigates the development of a more efficient transmission and generator system for wind turbines. Current mechanical transmissions in turbines suffer energy losses from fricti…
Engineering Technology: Statics & Dynamics
Approximately 50% of dogs suffer from anxiety caused by high-intensity sounds (Grigg., et al., 2021). This is why this project worked on the design and construction of a treat dispensing mac…
Engineering Technology: Statics & Dynamics
Currently aviation produces considerable carbon emissions and high operating costs, making sustainable flight a key focus. Electric aircraft are widely viewed as an alternative due to their…
Engineering Technology: Statics & Dynamics
The bell nozzle is the most common rocket nozzle design, but it is optimized for a single altitude and therefore operates below peak efficiency during most of flight. The aerospike is an alt…
Engineering Technology: Statics & Dynamics
Thrust vector control (TVC) enables rockets to adjust their trajectory by redirecting engine thrust, providing active stabilization during powered flight when aerodynamic fins are less effec…
Engineering Technology: Statics & Dynamics
Conventional trailing-edge control surfaces introduce local surface discontinuities and abrupt camber changes, causing premature flow separation and pressure drag. This project aimed to desi…
Engineering Technology: Statics & Dynamics
The World Health Organization (WHO) states over 2 billion people lack access to safe drinking water, exposing them to heavy metals, pesticides, and microbial toxins that cause cancer and dev…
Engineering Technology: Statics & Dynamics
Introduction: Standard athletic head protection utilizes Expanded Polystyrene (EPS) foam, which lacks the non-linear compression properties necessary for biometric tuning. Prompted by the re…
Engineering Technology: Statics & Dynamics
Forklifts are widely used in business logistics due to their ability to move loads vertically. Their capability to lift loads to significant heights combined with their compact dimensions ma…
Engineering Technology: Statics & Dynamics
Asphalt properties change throughout its aging process through a physiochemical process. Asphalt needs to be well understood to better utilize its properties in order to extend its mechanica…
Engineering Technology: Statics & Dynamics
Low-speed aerodynamic stalls remain a critical limitation for general aviation (GA) aircraft and unmanned aerial vehicles (UAVs) operating at low Reynolds numbers. Although the Clark-Y airfo…
Engineering Technology: Statics & Dynamics
Heating and cooling systems account for nearly 50% of the global energy consumption. Heat exchangers are critical components of all heating and cooling systems. Heat transfer efficiency is a…