MARTIN D CEPKAUSKAS
Engineering in Eastham, MA

License number
Massachusetts 34636
Issued Date
Jun 23, 1989
Expiration Date
Jun 30, 2018
Type
Mechanical Engineer
Address
Address
Eastham, MA 02642

Professional information

Martin Cepkauskas Photo 1

Method Of Decommissioning A Nuclear Reactor

US Patent:
5297182, Mar 22, 1994
Filed:
Oct 29, 1991
Appl. No.:
7/784548
Inventors:
Martin D. Cepkauskas - Eastham MA
Assignee:
M-K Ferguson Company - Cleveland OH
International Classification:
G21C 1900
US Classification:
376260
Abstract:
A method of decommissioning a nuclear reactor is provided in which radiation exposure is minimized. The method includes the steps of encapsulating portions of the reactor vessel and reactor internals into a solid reactor capsule and then converting this reactor capsule into a plurality of decommissioned segments. The encapsulating step preferably includes the step of forming a matrix within the chamber which integrally attaches to the vessel and integrally embeds the reactor internals to create a solid reactor capsule. Such a reactor capsule has an outer shell which is formed from the vessel and which substantially encases the matrix and thus the reactor internals. More particularly, this encapsulating is preferably accomplished by providing a fluidized matrix-creating material, preferably concrete, which may be predictably solidified and which functions as a radioactive shield in its solid state. The conversion of the reactor capsule is preferably accomplished by cutting the reactor capsule into transportable-size segments and then encasing these transportable-size segments.


Martin Cepkauskas Photo 2

Template Method For Replacing A Vessel In A Pipe System

US Patent:
4994230, Feb 19, 1991
Filed:
Sep 19, 1989
Appl. No.:
7/409247
Inventors:
Martin D. Cepkauskas - Eastham MA
Assignee:
MK Ferguson Company - Cleveland OH
International Classification:
G21C 2100
US Classification:
376260
Abstract:
A method for replacing a vessel in a piping system utilizes a template to determine the relative spatial positions of the pipe connections to the vessel in the existing system. The template is then removed from the existing system and reassembled on the new vessel in a remote location to determine the relative spatial position of the new pipe connections to the new vessel to ascertain if alignment will exist between those new pipe connections and the existing pipes in the system. If not, the pipe connections on the new vessel are initially reworked in the remote location to achieve alignment within connection tolerances. The pipes are then cut at their respective connections to the old vessel, the old vessel is removed, the new vessel is put in place in the system and the cut ends of the pipes are connected to new connections on the new vessel to complete the installation of the new vessel in the piping system. This method, which may be utilized, for example, in replacing a steam generator in the primary system of a nuclear energy plant, allows most of the rework to be performed outside a radioactive environment and minimizes the amount of maintenance downtime for the plant.