JOHN F REUTHER
Engineers in Pittsburgh, PA

License number
Pennsylvania PE012067E
Category
Engineers
Type
Professional Engineer
Address
Address
Pittsburgh, PA 15235

Professional information

John Reuther Photo 1

Local Maintenance Controller For Gas Turbine Power Plants Having A Primary Control System

US Patent:
3975902, Aug 24, 1976
Filed:
Jun 4, 1974
Appl. No.:
5/476182
Inventors:
Jack R. Smith - Pittsburgh PA
Leonard H. Burrows - Gibsonia PA
Richard S. Heiser - Pittsburgh PA
Richard J. Hertz - Butler PA
Joseph A. Pesavento - Pittsburgh PA
John F. Reuther - Pittsburgh PA
James J. Shields - Philadelphia PA
Robert A. Yannone - Aldan PA
Assignee:
Westinghouse Electric Corp. - Pittsburgh PA
International Classification:
F02C 910, F02C 902
US Classification:
60 3925
Abstract:
A local maintenance controller permits continued power generation during maintenance or failure of a primary gas turbine control system by manually for maintenance purposes or automatically for failure purposes assuming turbine control to thereby insure continued operation. The local maintenance controller set forth is particularly suitable for use in conjunction with a computer implemented gas turbine control system. Transfer between the local maintenance controller and the primary control system is effected in a bumpless manner so that load swings are absent. However, if the turbine was operating at system reserve at the time of transfer, the local maintenance controller reduces the load to peak value until primary control is resumed. Operation at any other load at the time of transfer is maintained by the controller. Transfer back to primary control is also effected in a bumpless manner.


John Reuther Photo 2

System For Providing Load-Frequency Control Through Predictively And _Dynamically Dispatched Gas Turbine-Generator Units

US Patent:
4305129, Dec 8, 1981
Filed:
Jan 11, 1980
Appl. No.:
6/111417
Inventors:
Robert A. Yannone - Aldan PA
John F. Reuther - Penn Hills PA
Assignee:
Westinghouse Electric Corp. - Pittsburgh PA
International Classification:
F01D 1704
US Classification:
364492
Abstract:
An optimized high load blocking limit is independently computer calculated for each gas turbine-generator unit as a dynamic function of combustor shell pressure and exhaust temperature every second. A low load blocking limit can be calculated as a function of the high blocking limit. The high and low dynamic limits then define a band of megawatts instantaneously available to the system. At the dispatch computer, load-frequency control is executed and the calculated load demands are dispatched to the various gas turbine-generator units which respond without exceeding the respective high and low load blocking limits. A turbine control unit load reference is modified by the dispatched load change and each unit load control operates its turbine fuel control valves to satisfy the load demand.


John Reuther Photo 3

System And Method Employing A Digital Computer For Automatically Synchronizing A Gas Turbine Or Other Electric Power Plant Generator With A Power System

US Patent:
4536126, Aug 20, 1985
Filed:
Jul 31, 1972
Appl. No.:
5/276508
Inventors:
John F. Reuther - Pittsburgh PA
Assignee:
Westinghouse Electric Corp. - Pittsburgh PA
International Classification:
H02P 904
US Classification:
290 40R
Abstract:
A gas turbine power plant is provided with an industrial gas turbine which drives a rotating brushless exciter generator coupled to a power system through a breaker. One or more of the turbine-generator plants are operated by a hybrid digital computer control system during sequenced startup, synchronizing, load, and shutdown operations. The program system for the computer and external analog circuitry operate in a multiple gas turbine control loop arrangement. Automatic synchronization is achieved with a hybrid subsystem which includes the programmed computer and external phase detection circuitry. An automatic synchronization program for the computer is divided into rough speed and voltage matching, fine speed matching and breaker closure subprograms.


John Reuther Photo 4

System And Method For Operating Industrial Gas Turbine Apparatus And Gas Turbine Electric Power Plants Preferably With A Digital Computer Control System

US Patent:
4308463, Dec 29, 1981
Filed:
Dec 29, 1972
Appl. No.:
6/319114
Inventors:
Theodore C. Giras - Pittsburgh PA
John F. Reuther - Pittsburgh PA
Assignee:
Westinghouse Electric Corp. - Pittsburgh PA
International Classification:
G05B 1502
US Classification:
290 1
Abstract:
A gas turbine power plant is provided with an industrial gas turbine which drives a rotating brushless exciter generator coupled to a power system through a breaker. One or more of the turbine-generator plants are operated by a hybrid digital computer control system during sequenced startup, synchronizing, load, and shutdown operations. The program system for the computer and external analog circuitry operate in a multiple gas turbine control loop arrangement. Logic macro instructions are employed in programming the computer for logic operations of the control system.


John Reuther Photo 5

Turbine Speed Controlling Valve Operation

US Patent:
4028532, Jun 7, 1977
Filed:
Nov 2, 1973
Appl. No.:
5/412513
Inventors:
John F. Reuther - Pittsburgh PA
Assignee:
Westinghouse Electric Corporation - Pittsburgh PA
International Classification:
F01D 1900
US Classification:
2351511
Abstract:
Improved turbine speed controlling valve operation is provided through the accumulation for direct entry into a digital computer of a count of displacement pulses generated by incremental rotation of the turbine output shaft. The digital computer is operative to position the control valves in response to the speed of rotation of the output shaft calculated either as a function of the number of pulses accumulated in a predetermined interval or the time required to accumulate a preselected count, depending upon the operating point of the turbine. The accumulation of displacement pulses can be inhibited while the time measurement is being read to avoid errors in measurement. Resumption of the accumulation of displacement pulses and the measurement of time is synchronized to preserve accuracy.