This inventor holds 1 USPTO granted patent. Top assignee: United Technologies Corporation. Active years: 2019.
Company Filing History:
Years Active: 2019
Title: Richard P. Neisner: Innovator in Aero-Thermo Management Systems
Introduction
Richard P. Neisner is a notable inventor based in Glastonbury, Connecticut. He has made significant contributions to the field of fluid-based engineering systems. His innovative work focuses on managing tip clearance in aero-thermo models, which is crucial for enhancing the efficiency of various engineering applications.
Latest Patents
Richard P. Neisner holds a patent for a "Compact aero-thermo model based tip clearance management." This patent describes systems and methods for controlling a fluid-based engineering system. The invention includes a model processor that generates model outputs, incorporating a set state module for setting dynamic states. The open loop model generates a current state model based on these dynamic states and model inputs. The current state model is constrained by a series of cycle synthesis modules, each modeling a component of the control system cycle. Notably, the rotary apparatus module estimates the tip clearance between the rotor and the rotor case. This innovative approach enhances the precision and efficiency of fluid-based systems.
Career Highlights
Richard P. Neisner is associated with United Technologies Corporation, where he has contributed to various engineering projects. His expertise in fluid dynamics and system modeling has positioned him as a valuable asset in the field. His work has implications for improving the performance of engineering systems across multiple industries.
Collaborations
Richard has collaborated with notable colleagues, including John L. Shade and Boris Karpman. These partnerships have fostered innovation and have led to advancements in the technologies they work on.
Conclusion
Richard P. Neisner's contributions to aero-thermo management systems exemplify the importance of innovation in engineering. His patent and collaborative efforts reflect a commitment to advancing technology in fluid-based systems. His work continues to influence the field and inspire future innovations.
