SAFETY VALVE ENGINEERING

Sizing starts with the relieving case—not the existing valve size.

HHSV converts a defined relieving load and service condition into a calculated discharge area, selectable valve configuration and reviewable technical quotation using the project-specified API 520 or ISO 4126 route.

ENGINEERING OUTPUT

Calculated. Selected. Documented.

01

Relieving case

Client or process engineer defines the credible scenario and required load.

02

Sizing basis

Fluid properties, pressures, temperature and backpressure are verified.

03

Valve selection

Required area is matched to a suitable product, orifice and configuration.

04

Technical quote

Calculation, datasheet, drawing, compliance status and scope are submitted.

REQUIRED INPUTS

Six data groups establish the minimum sizing basis.

Incomplete data can be marked unknown, but no final valve size should be inferred from a nameplate, line size or set pressure alone.

01

Medium and phase

Fluid name, composition and whether the relieving condition is gas, vapor, steam, liquid or two-phase.

02

Required capacity

Mass or volumetric relieving rate, unit, basis conditions and the governing relief scenario.

03

Pressure data

Operating pressure, MAWP when applicable, set pressure, allowable overpressure and relieving pressure.

04

Temperature

Operating and relieving temperature, including any low-temperature or high-temperature design condition.

05

Backpressure

Superimposed and built-up backpressure, whether constant or variable, and the outlet-system basis.

06

Connection and scope

Inlet/outlet size, rating, facing, material, standard, certification, quantity and inspection requirements.

SIZING DATA TABLE

What to provide and why it changes the result.

Units, pressure reference and basis conditions must be stated; avoid unlabeled spreadsheet values.

FIELD

MINIMUM INPUT

USE IN REVIEW

Relieving load

Value + unit + calculation owner

Sets the required capacity; not derived from valve size

Fluid / phase

Composition and state at relief

Selects the applicable sizing method and fluid properties

Operating pressure

Normal and maximum expected

Checks margin below set pressure and operating stability

Set / relieving pressure

Gauge basis and allowable overpressure

Establishes the pressure used in the capacity calculation

Relieving temperature

Temperature at the valve inlet

Affects properties, materials and correction factors

Backpressure

Superimposed + built-up; constant or variable

Influences configuration and correction method

Connections / code

Size, class, facing and project standard

Controls physical selection and approval scope

Required documents

Calculation, drawing, certificates, ITP/MDR

Defines the technical quotation and delivery boundary

ENGINEERING WORKFLOW

Six steps from relief case to technical quotation.

Desktop uses a native six-column grid. Tablet changes to three columns and mobile to one without changing the sequence.

01

Define case

Confirm the credible relief scenario and required relieving load

02

Verify fluid

Establish phase, composition and properties at relieving conditions

03

Set pressures

Confirm set pressure, overpressure and total backpressure basis

04

Calculate area

Apply the project-specified API 520 or ISO 4126 method

05

Select valve

Choose an orifice, model, material and backpressure configuration

06

Submit quote

Issue calculation, datasheet, drawing, deviations and delivery scope

CALCULATION ROUTE

Use the project standard as the calculation basis—not as interchangeable wording.

HHSV confirms the standard, edition, scope and any owner-specific rules during technical review.

SIZING AND SELECTION

API 520 route

Used when the project specification requires API sizing and selection. The calculation basis, fluid case, coefficients, backpressure treatment and selected valve data are stated in the submittal.

API 520 is not a generic certification statement; the supplied product’s actual certification and nameplate scope are checked separately.

SAFETY DEVICES

ISO 4126 route

Used when ISO 4126 is the specified design and calculation framework. The relevant part, fluid case and product configuration are confirmed before final selection.

A valve designed or calculated to an ISO method is not automatically certified for every ISO 4126 product category or application.

SELECTION REVIEW

The calculated area is only one selection input.

ENGINEERING CHECKS

Before the model and orifice are fixed.

The selected certified orifice or effective discharge area must meet or exceed the calculated requirement, but configuration and operating behavior still require engineering review.

TECHNICAL QUOTATION

A review package, not a price-only response.

The exact document set depends on enquiry maturity and customer requirements.

01

Sizing basis

Service data, relief case, assumptions, units and applicable calculation route

02

Calculation sheet

Required discharge area, selected orifice and relevant correction basis

03

Valve datasheet

Model, configuration, size, rating, materials, set pressure and temperature

04

GA drawing

Dimensions, connections, weights and installation interfaces where available

05

Compliance package

Certificate matrix, designed/tested/certified status and deviations

06

Commercial boundary

Price, Incoterm, inspection, documents, delivery schedule and exclusions

START WITH AVAILABLE DATA

An RFQ, datasheet or nameplate photo is enough to begin clarification.

STOP AND CLARIFY

Do not finalize the selection when the relief basis is uncertain.