Hydrostatic Pressure Test Method
A method and apparatus for testing closed hydraulic systems such as a blowout preventer for leaks maintain a constant pressure in the portion of the hydraulic system to be tested. A variable displacement pump is connected to the system for maintaining a constant pressure within the system. Any amount of fluid introduced into or removed from the blowout preventer in order to maintain constant pressure is measured and is an indication of the leak rate in the closed hydraulic system.
1 . A method of testing for leaks in a closed hydraulic system comprising:
a. pressurizing the portion of the closed hydraulic system to a first pressure level,
b. maintaining a constant pressure within the portion of the closed hydraulic system to be tested, and
c. immediately measuring any amount of fluid added to or removed from the pressurized portion of the closed hydraulic system that is required to maintain the pressure within the portion to be tested at a constant level.
2 . The method as claimed in claim 2 wherein the pressure is maintained constant by a intensifier pump driven by a variable displacement hydraulic pump.
3 . The method as claimed in claim 1 wherein the intensifier pump includes an axially movable piston and the amount of fluid added to or removed from the portion of the portion of the closed hydraulic system is measured by measuring any displacement of the piston after the portion of the closed hydraulic system to be tested has been pressurized to the first pressure level.
4 . The method as claimed in claim 1 further including step of raising the pressure within the portion of the closed hydraulic system to be tested to a second pressure level and immediately measuring any amount of fluid added to or removed from the portion of the blowout preventer to be tested in order to maintain a constant pressure at the second pressure level.
5 . The method as claimed in claim 1 wherein the pressurizing step includes an initial pressurization phase and a transitional pressurization phase that mitigates the effects of thermal and mechanical induced pressure changes.