Autonomous Shutdown Valve for Subsea Plem Valves Presentation

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Brian Ennever Managing Director Autonomous Shutdown Valve for Subsea PLEM Valves

Transcript of Autonomous Shutdown Valve for Subsea Plem Valves Presentation

Page 1: Autonomous Shutdown Valve for Subsea Plem Valves Presentation

• Brian Ennever Managing Director

Autonomous Shutdown Valve

for Subsea PLEM Valves

Page 2: Autonomous Shutdown Valve for Subsea Plem Valves Presentation

Typical CALM Buoy System

Typically used in shallow water applications down to 245m without requiring pressure compensation

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Central Pipe Swivel

Floating Hose

Submarine Hose

Anchor Chain Leg

PLEM

Pipeline

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The Problems

• Umbilicals provide actuator’s hydraulic supply pressure

• Umbilicals provide electrical signalling and partial closure testing control

• Umbilicals are prone to wear and tear and damage

• In the event of umbilical failure, all remote control is lost

• Valve control via diver or ROV intervention are the only options following umbilical failure

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Operation Without Autonomous

Shutdown Valve (ASV)

• Manual PLEM valve

• Expensive diver interventions required for each tanker visit

• Valve operation in fair weather only • Actuated PLEM valve

• Operated by HPU on surface buoy

• Unsatisfactory system availability due to dependence on offshore visits

• Reliability issues due to complex and fragile control system

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Operation Without ASV

• Actuated PLEM valve - continued

• No Emergency Shutdown (ESD) facility

• Control is reliant on a telemetry link as

opposed to hard wired

• Requires frequent trips to buoy for checking

and recharging of Hydraulic Power Unit (HPU)

pressure

• System availability issues

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ASV System Overview

• Electro-hydraulic system

housed within an oil filled

pressure compensated

pod

• Pipeline pressure acts on

barrier vessel, pipeline

pressure on one side

converts to control

pressure on the other

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ASV System Overview

• Operates on a mineral or

biodegradable fluid within

a sealed system

• Actuator powered via a

high flow pilot valve

• Pilot valve controlled by 2

solenoid valves

• Manifolded system 7 of 15

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Communications

• Cable connecting to surface buoy to

provide: • Remote status indication

• Simple health checks

• Manual override function

• In-situ diagnostics and configuration

• Communications are via a RS link and

normally via a connection on the

surface buoy

• Data can be transferred by any

appropriate highway 8 of 15

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Communications

• Standard monitoring data includes:

• Pipeline pressure

• Valve position status - open/closed/

intermediate

• Solenoid valve status - energized/de-

energized

• Number of completed valve operation

cycles

• Pressure sensor health

• Solenoids health

• Battery health 9 of 15

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Communications

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Electronics Package

• Batteries have a 20A/Hr

capacity

• 8 Bit micro controller

• Internal watchdogs give 1:115

time ratio to conserve battery

power

• Expected life 7/15 years, 5

years guaranteed based on 3

operations per week

• Rechargeable battery option

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Double-Acting Actuator Option

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ASV HIPPS

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Operator Concerns

• Improving Reliability

• Reducing OPEX

• Increasing Environmental

Protection

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Contact information

• Brian Ennever, Managing Director

• Paladon Systems Ltd.

[email protected]

• Tel. +44 (0)1604 880700

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