{"id":13405,"date":"2026-07-22T19:38:37","date_gmt":"2026-07-22T11:38:37","guid":{"rendered":"https:\/\/raymonvalve.com\/?p=13405"},"modified":"2026-07-22T19:39:47","modified_gmt":"2026-07-22T11:39:47","slug":"full-port-vs-reduced-port-ball-valve","status":"publish","type":"post","link":"https:\/\/raymonvalve.com\/it\/full-port-vs-reduced-port-ball-valve\/","title":{"rendered":"Valvola a sfera a passaggio totale vs passaggio ridotto: capacit\u00e0 di flusso, perdita di carico, pigging e selezione"},"content":{"rendered":"\t\t<div data-elementor-type=\"wp-post\" data-elementor-id=\"13405\" class=\"elementor elementor-13405\" data-elementor-post-type=\"post\">\n\t\t\t\t<div class=\"elementor-element elementor-element-51e181da e-flex e-con-boxed e-con e-parent\" data-id=\"51e181da\" data-element_type=\"container\" data-e-type=\"container\">\n\t\t\t\t\t<div class=\"e-con-inner\">\n\t\t\t\t<div class=\"elementor-element elementor-element-432adef5 elementor-widget 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.raymonvalve-blog-page .rv-approval,\n  .raymonvalve-blog-page .rv-hold {\n    padding: 18px;\n  }\n  .raymonvalve-blog-page .rv-card,\n  .raymonvalve-blog-page .rv-gate-item,\n  .raymonvalve-blog-page .rv-approval-card {\n    padding: 17px;\n  }\n  .raymonvalve-blog-page .rv-cta {\n    padding: 24px 20px;\n  }\n}\n@media print {\n  .raymonvalve-blog-page {\n    max-width: none;\n    padding: 0;\n    color: #000;\n  }\n  .raymonvalve-blog-page .rv-button {\n    display: none;\n  }\n  .raymonvalve-blog-page .rv-wide {\n    width: 100%;\n    max-width: 100%;\n    margin-left: 0;\n    transform: none;\n  }\n  .raymonvalve-blog-page .raymonvalve-table-wrap {\n    overflow: visible;\n  }\n  .raymonvalve-blog-page table {\n    min-width: 0;\n  }\n}\n\n\n.raymonvalve-blog-page .rv-formula {\n  margin: 24px 0 30px;\n  padding: 24px;\n  background: #f8fafb;\n  border: 1px solid var(--rv-line);\n  border-left: 5px solid var(--rv-blue);\n  border-radius: 15px;\n}\n.raymonvalve-blog-page .rv-formula h3 {\n  margin-top: 0;\n}\n.raymonvalve-blog-page .rv-equation {\n  display: block;\n  margin: 15px 0;\n  padding: 14px 18px;\n  color: var(--rv-navy);\n  background: #ffffff;\n  border: 1px solid var(--rv-line);\n  border-radius: 10px;\n  font-family: Georgia, \"Times New Roman\", serif;\n  font-size: clamp(1.3rem, 3vw, 1.75rem);\n  font-weight: 700;\n  text-align: center;\n}\n.raymonvalve-blog-page .rv-formula small {\n  display: block;\n  color: var(--rv-muted);\n  line-height: 1.55;\n}\n<\/style><\/p>\n<article class=\"raymonvalve-blog-page\">\n<div class=\"rv-content\">\n<section class=\"rv-intro\" aria-label=\"Direct answer\"><span class=\"rv-kicker\">Engineering Comparison<\/span>\n<p>A full port ball valve normally provides a bore closer to the inside diameter of the adjoining pipe, helping reduce flow restriction and maintain a larger passage. A reduced port valve uses a smaller internal opening and may be acceptable where pressure drop and local velocity remain within the system limits. Technical approval should be based on the actual minimum bore, pipe schedule, exact-model Cv and, where pigging is required, the complete unobstructed passage\u2014not the port label alone.<\/p>\n<\/section>\n<nav class=\"rv-toc\" aria-label=\"Article contents\"><strong>Article Contents<\/strong>\n<ul>\n<li><a href=\"#technical-approval-gate\">Technical Approval Gate<\/a><\/li>\n<li><a href=\"#port-terminology\">Port Terminology and Bore<\/a><\/li>\n<li><a href=\"#flow-capacity\">Flow Capacity and Cv<\/a><\/li>\n<li><a href=\"#pressure-drop\">Pressure-Drop Review<\/a><\/li>\n<li><a href=\"#pigging\">Pigging Approval<\/a><\/li>\n<li><a href=\"#selection-matrix\">Selection Matrix<\/a><\/li>\n<li><a href=\"#technical-bid-normalization\">Bid Normalization<\/a><\/li>\n<li><a href=\"#rfq-checklist\">RFQ Checklist<\/a><\/li>\n<\/ul>\n<\/nav>\n<section aria-labelledby=\"quick-selection-gate\">\n<h2 id=\"quick-selection-gate\">Quick Selection Gate<\/h2>\n<div class=\"rv-gate\">\n<div class=\"rv-gate-item\"><b>Pigging is required<\/b> Verify the minimum unobstructed passage and the actual pig envelope. \u201cFull port\u201d by itself is not approval.<\/div>\n<div class=\"rv-gate-item\"><b>Allowable pressure drop is limited<\/b> Obtain the exact offered-model Cv and calculate the minimum, normal and maximum flow cases.<\/div>\n<div class=\"rv-gate-item\"><b>Utility or low-flow isolation duty<\/b> A reduced port design may be acceptable after pressure-drop and local-velocity review.<\/div>\n<div class=\"rv-gate-item\"><b>Bore or Cv data is missing<\/b> Hold technical approval until the supplier provides the drawing and performance data.<\/div>\n<\/div>\n<\/section>\n<section aria-labelledby=\"technical-approval-gate\">\n<h2 id=\"technical-approval-gate\">Technical Approval Gate<\/h2>\n<p>A port designation should pass four separate review gates before it is accepted. Failure at one gate is not corrected by passing another. For example, an adequate pressure class does not prove flow capacity, and a large bore does not prove material or actuator suitability.<\/p>\n<div class=\"rv-approval-grid\">\n<div class=\"rv-approval-card\"><span class=\"rv-status\">Gate 1<\/span>\n<h3>Geometry and Bore<\/h3>\n<ul>\n<li>Pipe schedule and actual inside diameter confirmed<\/li>\n<li>Valve end bore and minimum ball bore identified<\/li>\n<li>Seat or internal projections reviewed<\/li>\n<li>Offered-model drawing submitted<\/li>\n<\/ul>\n<\/div>\n<div class=\"rv-approval-card\"><span class=\"rv-status\">Gate 2<\/span>\n<h3>Hydraulic Performance<\/h3>\n<ul>\n<li>Minimum, normal and maximum flow cases defined<\/li>\n<li>Exact offered-model Cv supplied<\/li>\n<li>Allowable valve pressure drop stated<\/li>\n<li>Local velocity and system margin reviewed<\/li>\n<\/ul>\n<\/div>\n<div class=\"rv-approval-card rv-critical\"><span class=\"rv-status\">Gate 3<\/span>\n<h3>Pigging and Passage<\/h3>\n<ul>\n<li>Pig type and maximum envelope defined<\/li>\n<li>Complete minimum unobstructed passage checked<\/li>\n<li>Fully open stop alignment confirmed<\/li>\n<li>Written supplier confirmation obtained<\/li>\n<\/ul>\n<\/div>\n<div class=\"rv-approval-card\"><span class=\"rv-status\">Gate 4<\/span>\n<h3>Complete Valve Package<\/h3>\n<ul>\n<li>Pressure-temperature rating verified<\/li>\n<li>Materials, seats and seals reviewed<\/li>\n<li>Torque and actuation basis confirmed<\/li>\n<li>Testing, documents and deviations aligned<\/li>\n<\/ul>\n<\/div>\n<\/div>\n<div class=\"rv-decision-bar\"><strong>Approval rule:<\/strong> accept the offered port design only after the bore, hydraulic, pigging and complete-package evidence are consistent with the same valve model and project datasheet.<\/div>\n<\/section>\n<figure class=\"rv-wide\"><img fetchpriority=\"high\" decoding=\"async\" src=\"https:\/\/raymonvalve.com\/wp-content\/uploads\/2026\/07\/full-port-vs-reduced-port-ball-valve-hero.webp\" alt=\"Full port and reduced port ball valve flow passage comparison\" width=\"1600\" height=\"900\" data-image-status=\"live-verified\" title=\"\">\n<figcaption>Engineering schematic comparing the larger passage of a full port design with the restriction created by a reduced port design. Not a product drawing.<\/figcaption>\n<\/figure>\n<p>For broader review of construction, seat, material and operating choices, see the <a href=\"https:\/\/raymonvalve.com\/ball-valve-selection-guide\/\">complete ball valve selection guide<\/a>. Buyers comparing available constructions can also review Raymon Valve\u2019s <a href=\"https:\/\/raymonvalve.com\/ball-valves-news\/\">industrial ball valve range<\/a> and <a href=\"https:\/\/raymonvalve.com\/ball-valves-news\/flanged-ball-valve\/\">flanged ball valve configurations<\/a>.<\/p>\n<h2 id=\"port-terminology\">What Do Full Port and Reduced Port Mean?<\/h2>\n<h3>Full Port or Full Bore Ball Valve<\/h3>\n<p>The terms <strong>full port<\/strong> and <strong>full bore<\/strong> are commonly used for a valve whose internal passage is close to the adjoining pipe bore. The larger passage generally produces less flow restriction than a smaller-bore valve of the same nominal size.<\/p>\n<p>That does not mean the internal diameter automatically matches every pipe identified by the same NPS or DN. Actual pipe inside diameter changes with pipe schedule, wall thickness, corrosion allowance, lining, manufacturing tolerance and the geometry of adjoining transitions.<\/p>\n<h3>Reduced Port or Standard Port Ball Valve<\/h3>\n<p>A reduced port valve has an internal passage smaller than the connected line bore. Depending on the design, the smaller ball and passage may support a more compact body or a lower normalized purchase cost.<\/p>\n<p>The term <strong>standard port<\/strong> is not a universal dimensional definition. Two suppliers can both use that term while offering different minimum bores and different Cv values. A technical RFQ should therefore state the required bore, Cv or allowable pressure drop rather than rely on terminology alone.<\/p>\n<h3>Nominal Size Is Not the Actual Flow Diameter<\/h3>\n<p>A valve marked NPS 8 or DN 200 does not automatically provide an 8-inch or 200-millimetre unobstructed passage. The complete route can include the adjoining pipe ID, valve end bore, body transition, seat opening, ball bore and downstream transition. The smallest unobstructed diameter often becomes the controlling dimension.<\/p>\n<figure class=\"rv-wide\"><img decoding=\"async\" src=\"https:\/\/raymonvalve.com\/wp-content\/uploads\/2026\/07\/ball-valve-pipe-id-minimum-bore-diagram.webp\" alt=\"Pipe inside diameter and ball valve minimum bore comparison\" width=\"1200\" height=\"900\" data-image-status=\"live-verified\" title=\"\">\n<figcaption>Example geometry showing why nominal size does not replace the actual pipe ID and minimum valve-bore check.<\/figcaption>\n<\/figure>\n<div class=\"rv-warning\"><strong>Approval boundary:<\/strong> Where bore continuity, cleaning-device passage or pigging matters, require a minimum-bore dimension on the offered-model drawing. Do not infer the passage from the nameplate size.<\/div>\n<h2 id=\"comparison-table\">Full Port vs Reduced Port Ball Valve Comparison<\/h2>\n<div class=\"raymonvalve-table-wrap\" tabindex=\"0\" role=\"region\" aria-label=\"Full port and reduced port comparison table\">\n<table>\n<thead>\n<tr>\n<th scope=\"col\">Selection factor<\/th>\n<th scope=\"col\">Full port direction<\/th>\n<th scope=\"col\">Reduced port direction<\/th>\n<th scope=\"col\">Buyer verification<\/th>\n<\/tr>\n<\/thead>\n<tbody>\n<tr>\n<td>Internal passage<\/td>\n<td>Closer to the adjoining pipe bore<\/td>\n<td>Smaller than the adjoining line bore<\/td>\n<td>Minimum bore on the drawing<\/td>\n<\/tr>\n<tr>\n<td>Flow capacity<\/td>\n<td>Generally higher for comparable designs<\/td>\n<td>Generally lower<\/td>\n<td>Exact offered-model Cv<\/td>\n<\/tr>\n<tr>\n<td>Pressure drop<\/td>\n<td>Generally lower at the same flow<\/td>\n<td>Generally higher<\/td>\n<td>Project hydraulic calculation<\/td>\n<\/tr>\n<tr>\n<td>Local velocity<\/td>\n<td>Lower through the larger passage<\/td>\n<td>Higher through the restriction<\/td>\n<td>Flow rate and actual bore<\/td>\n<\/tr>\n<tr>\n<td>Pigging<\/td>\n<td>May be suitable after dimensional confirmation<\/td>\n<td>Normally unsuitable for full-line pig passage<\/td>\n<td>Pig envelope and sectional drawing<\/td>\n<\/tr>\n<tr>\n<td>Solids passage<\/td>\n<td>Larger opening may reduce restriction<\/td>\n<td>Smaller opening may increase blockage risk<\/td>\n<td>Particle size, concentration and cleaning method<\/td>\n<\/tr>\n<tr>\n<td>Body envelope<\/td>\n<td>May require a larger ball or body<\/td>\n<td>May be more compact<\/td>\n<td>GA drawing<\/td>\n<\/tr>\n<tr>\n<td>Weight and cost<\/td>\n<td>May be higher<\/td>\n<td>May be lower<\/td>\n<td>Normalized supplier quotation<\/td>\n<\/tr>\n<tr>\n<td>Operating torque<\/td>\n<td>Product-specific<\/td>\n<td>Product-specific<\/td>\n<td>Manufacturer torque data<\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n<\/div>\n<h2 id=\"flow-capacity\">How Port Size Changes Flow Capacity<\/h2>\n<h3>Flow Area Is Only the First Check<\/h3>\n<p>Reducing a circular bore reduces its flow area. At the same volumetric flow rate, fluid velocity increases through the smaller opening. This explains the general direction of the pressure-loss difference, but bore area alone does not determine final performance.<\/p>\n<p>Seat geometry, body transitions, port alignment, surface condition, end connections, viscosity, Reynolds number, gas compressibility and adjoining piping can all affect the result.<\/p>\n<h3>Use the Exact Offered-Model Cv<\/h3>\n<p>Cv represents valve flow capacity under defined reference conditions. For the same liquid and operating basis, a higher Cv generally corresponds to lower valve pressure loss. The value used for comparison should belong to the exact offered valve size, body series, pressure class, end connection and port design.<\/p>\n<p>A generic online table is not product evidence. Two valves carrying the same nominal size and the same \u201cfull port\u201d description can still have different body transitions and different Cv values.<\/p>\n<figure class=\"rv-wide\"><img decoding=\"async\" src=\"https:\/\/raymonvalve.com\/wp-content\/uploads\/2026\/07\/ball-valve-cv-pressure-drop-comparison.webp\" alt=\"Higher Cv and lower Cv ball valve pressure drop trend\" width=\"1200\" height=\"900\" data-image-status=\"live-verified\" title=\"\">\n<figcaption>Example liquid-flow trend under the same conditions. Normalized axes are used; this is not a product-sizing calculation.<\/figcaption>\n<\/figure>\n<h3>Full Port Does Not Mean Zero Pressure Drop<\/h3>\n<p>A full port valve is still a component in the piping system. Flow can encounter local geometry changes at the valve ends, seats, body cavity and bore transitions. A verified full port design may reduce restriction compared with a reduced port alternative, but it does not create zero pressure loss.<\/p>\n<h2 id=\"pressure-drop\">Pressure Drop: What Must Be Calculated?<\/h2>\n<p>The relevant question is not merely whether reduced port creates more pressure drop. The project must determine whether the additional loss is acceptable within the complete system.<\/p>\n<div class=\"rv-three-col\">\n<div class=\"rv-card\">\n<h3>Process inputs<\/h3>\n<ul>\n<li>Minimum, normal and maximum flow<\/li>\n<li>Medium and phase<\/li>\n<li>Density or specific gravity<\/li>\n<li>Viscosity<\/li>\n<li>Operating pressure and temperature<\/li>\n<\/ul>\n<\/div>\n<div class=\"rv-card\">\n<h3>System inputs<\/h3>\n<ul>\n<li>Actual pipe inside diameter<\/li>\n<li>Available pump or compressor margin<\/li>\n<li>Required downstream pressure<\/li>\n<li>Total line loss<\/li>\n<li>Future-capacity cases<\/li>\n<\/ul>\n<\/div>\n<div class=\"rv-card\">\n<h3>Valve inputs<\/h3>\n<ul>\n<li>Exact-model Cv<\/li>\n<li>Minimum bore<\/li>\n<li>Port configuration<\/li>\n<li>Fully open condition<\/li>\n<li>Allowable valve pressure drop<\/li>\n<\/ul>\n<\/div>\n<\/div>\n<h3>Liquid Service<\/h3>\n<p>For a single-phase liquid under an applicable non-choked calculation method, a lower Cv results in a higher pressure drop at the same flow and fluid properties. Supplier comparisons must use a consistent flow case, fluid basis, units and fully open Cv.<\/p>\n<div class=\"rv-formula\">\n<h3>Simple Liquid Estimate \u2014 Limited Use<\/h3>\n<p>For a preliminary single-phase incompressible-liquid estimate in compatible US units:<\/p>\n<span class=\"rv-equation\">\u0394P = SG \u00d7 (Q \/ Cv)\u00b2<\/span> <small><strong>Q<\/strong> = flow in US gpm; <strong>\u0394P<\/strong> = valve pressure drop in psi; <strong>SG<\/strong> = liquid specific gravity; <strong>Cv<\/strong> = fully open flow coefficient for the exact offered valve.<\/small>\n<p class=\"rv-small-note\">This simplified relationship is not a gas, steam, flashing, high-viscosity, slurry or multiphase sizing method. Final review should use the project-approved calculation method and offered-model data.<\/p>\n<\/div>\n<h3>Gas and Steam Service<\/h3>\n<p>Compressible flow requires inlet pressure, outlet pressure, temperature, gas properties and an applicable sizing method. A simple liquid relationship should not be transferred directly to gas or steam, particularly where a high pressure ratio or critical-flow condition may occur.<\/p>\n<h3>Viscous, Slurry and Multiphase Service<\/h3>\n<p>Published clean-fluid Cv data may not complete the review for high-viscosity liquids, slurries or multiphase streams. Viscosity correction, solids, settling, erosion, flashing, gas release and phase distribution may require additional engineering analysis.<\/p>\n<h3>When a System-Level Hydraulic Review Is Required<\/h3>\n<p>A simple comparison of two catalog Cv values may be insufficient when the valve can materially affect the complete system. Escalate the review where any of the following applies:<\/p>\n<ul class=\"rv-mini-checklist\">\n<li>The valve is on a pump suction line or a system with limited available head.<\/li>\n<li>The downstream equipment has a minimum required inlet pressure.<\/li>\n<li>The line includes several valves or restrictions whose losses accumulate.<\/li>\n<li>The project is evaluating increased future throughput.<\/li>\n<li>The fluid is compressible, highly viscous, flashing, multiphase or solids-bearing.<\/li>\n<li>The operating range includes startup, cleaning, upset or low-temperature cases.<\/li>\n<li>The cost of additional energy or lost production is significant relative to the valve-price difference.<\/li>\n<\/ul>\n<div class=\"rv-note\"><strong>Decision boundary:<\/strong> pressure class confirms neither adequate Cv nor acceptable system pressure loss. Hydraulic performance and pressure-containing capability are separate approval questions.<\/div>\n<h2 id=\"velocity-solids\">Local Velocity, Erosion and Fouling<\/h2>\n<p>At the same volumetric flow, the smaller passage in a reduced port valve creates higher local velocity. This can matter for abrasive solids, catalyst fines, sand, scale, crystals, fibres, sludge and fluids that tend to deposit around the seats or body cavity.<\/p>\n<p>Port size does not determine erosion resistance by itself. Particle concentration, hardness, impact angle, differential pressure, material hardness, seat design, orientation and operating duration must also be reviewed. Full port does not eliminate erosion, and reduced port is not automatically unsuitable for every solids-bearing service.<\/p>\n<h2 id=\"pigging\">Pigging: Why \u201cFull Port\u201d Is Not Enough<\/h2>\n<p>Pigging is one of the strongest reasons to specify a full-bore direction, but the actual pig must pass through the valve\u2019s complete internal geometry. The controlling envelope may include the pig body, cups, discs, brushes, magnets, gauges, centralizers or inspection instrumentation.<\/p>\n<figure class=\"rv-wide\"><img loading=\"lazy\" decoding=\"async\" src=\"https:\/\/raymonvalve.com\/wp-content\/uploads\/2026\/07\/piggable-ball-valve-clearance-diagram.webp\" alt=\"Pig clearance through a full bore ball valve\" width=\"1200\" height=\"900\" data-image-status=\"live-verified\" title=\"\">\n<figcaption>Engineering schematic of the pig envelope, minimum ball bore, seat opening, end transition and fully open alignment. Project dimensions remain required.<\/figcaption>\n<\/figure>\n<h3>Verify the Complete Passage<\/h3>\n<p>The technical review should check the minimum ball bore, seat inside diameter, valve end bore, weld-end transition, internal projections, ball-to-body alignment and downstream transition. The smallest dimension in that route can control pig passage.<\/p>\n<h3>Confirm the Fully Open Position<\/h3>\n<p>An adequate ball bore can still become an obstruction if the valve does not reach the correct fully open position. For gear- or actuator-operated valves, review the open stop, actuator travel stop, stem-to-ball alignment, position indication and commissioning setting.<\/p>\n<h3>Piggable Does Not Mean Suitable for Every Pig<\/h3>\n<p>A flexible foam pig and a rigid instrumented inspection pig do not impose the same clearance requirement. Technical approval should identify the pig type, maximum envelope, required clearance, travel direction and supplier assumptions.<\/p>\n<figure class=\"rv-wide\"><img loading=\"lazy\" decoding=\"async\" src=\"https:\/\/raymonvalve.com\/wp-content\/uploads\/2026\/07\/ball-valve-pigging-approval-flowchart-v2.webp\" alt=\"Ball valve pigging approval flow with hold and approval branches\" width=\"1200\" height=\"900\" data-image-status=\"live-verified\" title=\"\">\n<figcaption>Revised approval flow: incomplete evidence or unresolved critical deviations lead to Hold; only complete and acceptable evidence proceeds to engineering approval.<\/figcaption>\n<\/figure>\n<div class=\"rv-approval\">\n<h3>Pigging Approval Gate<\/h3>\n<ol>\n<li>Confirm the pipe size, schedule and actual inside diameter.<\/li>\n<li>Confirm the pig type and maximum operating envelope.<\/li>\n<li>Obtain the offered valve\u2019s sectional or minimum-bore drawing.<\/li>\n<li>Identify the smallest unobstructed passage.<\/li>\n<li>Review the seat and end-transition geometry.<\/li>\n<li>Confirm the fully open stop position.<\/li>\n<li>Confirm the required direction of pig travel.<\/li>\n<li>Obtain written manufacturer confirmation against the stated pig data.<\/li>\n<li>Record technical deviations.<\/li>\n<li>Complete project engineering approval.<\/li>\n<\/ol>\n<\/div>\n<div class=\"rv-note\"><strong>Standards boundary:<\/strong> API Specification 6D and ISO 14313 provide relevant pipeline-valve design, manufacturing, testing and documentation context where adopted by the project. A standard reference does not replace the offered-model bore drawing, pig envelope or written pigging confirmation.<\/div>\n<h2 id=\"commercial-tradeoffs\">Size, Cost and Actuation Trade-Offs<\/h2>\n<p>A full port valve may require a larger ball, body envelope, support load and installation space. A reduced port offer may be smaller or less expensive, but only after the buyer normalizes body construction, pressure class, materials, seats, testing, documentation and actuation.<\/p>\n<ul>\n<li>Compare exact GA dimensions and weight rather than assuming them from port terminology.<\/li>\n<li>Do not treat a lower reduced-port price as a saving until hydraulic and pigging requirements pass.<\/li>\n<li>Do not infer torque from port type; request breakaway, running and ending torque for the exact offered model.<\/li>\n<li>For actuated valves, confirm differential pressure, temperature, fail position, supply conditions, operating time and design margin.<\/li>\n<\/ul>\n<h2 id=\"selection-matrix\">Preliminary Selection Matrix<\/h2>\n<figure class=\"rv-wide\"><img loading=\"lazy\" decoding=\"async\" src=\"https:\/\/raymonvalve.com\/wp-content\/uploads\/2026\/07\/full-port-reduced-port-selection-matrix.webp\" alt=\"Full port and reduced port ball valve selection matrix\" width=\"1200\" height=\"900\" data-image-status=\"live-verified\" title=\"\">\n<figcaption>Preliminary direction only. Confirm actual bore, exact-model Cv, allowable pressure drop, pig envelope and supplier drawings.<\/figcaption>\n<\/figure>\n<p>The matrix is a preliminary direction only. Any case involving gas, steam, abrasive solids, uncertain future pigging or missing Cv\/bore data requires additional engineering review.<\/p>\n<h2 id=\"selection-consequence-matrix\">Wrong Selection Consequence and Verification Matrix<\/h2>\n<p>This matrix helps engineering and procurement teams connect an apparently minor port-choice error with the evidence required to prevent it.<\/p>\n<div class=\"raymonvalve-table-wrap\" tabindex=\"0\" role=\"region\" aria-label=\"Port selection consequence and verification matrix\">\n<table>\n<thead>\n<tr>\n<th scope=\"col\">Selection error<\/th>\n<th scope=\"col\">Possible project consequence<\/th>\n<th scope=\"col\">Evidence to check<\/th>\n<th scope=\"col\">Approval action<\/th>\n<\/tr>\n<\/thead>\n<tbody>\n<tr>\n<td>Reduced port accepted where pressure-loss margin is limited<\/td>\n<td>Lower downstream pressure, reduced throughput or additional energy demand<\/td>\n<td>Exact Cv, maximum-flow case and system pressure balance<\/td>\n<td>Recalculate before award<\/td>\n<\/tr>\n<tr>\n<td>\u201cFull port\u201d assumed to mean piggable<\/td>\n<td>Pig damage, obstruction or inability to complete inspection or cleaning<\/td>\n<td>Pig envelope, sectional drawing, minimum passage and open-stop details<\/td>\n<td>Hold until written confirmation<\/td>\n<\/tr>\n<tr>\n<td>Nominal size treated as actual bore<\/td>\n<td>Unexpected transition, local velocity increase or passage mismatch<\/td>\n<td>Pipe schedule, actual pipe ID and minimum valve bore<\/td>\n<td>Normalize dimensions<\/td>\n<\/tr>\n<tr>\n<td>Generic Cv used instead of offered-model data<\/td>\n<td>Incorrect pressure-drop comparison and false technical equivalence<\/td>\n<td>Manufacturer Cv for the exact size, class, body series and port<\/td>\n<td>Reject estimated value<\/td>\n<\/tr>\n<tr>\n<td>Torque inferred from port type<\/td>\n<td>Undersized actuator, incomplete travel or unreliable fail action<\/td>\n<td>Breakaway, running and ending torque with stated basis<\/td>\n<td>Complete actuator review<\/td>\n<\/tr>\n<tr>\n<td>Lowest price selected before technical normalization<\/td>\n<td>Commercial saving based on a smaller bore, reduced documentation or different scope<\/td>\n<td>Normalized bid table and technical-deviation schedule<\/td>\n<td>Compare like-for-like scope<\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n<\/div>\n<h2 id=\"approval-data-evidence\">Approval Data and Supplier Evidence<\/h2>\n<p>For approval, the project team should keep the process, piping, valve, pigging and supplier-evidence fields together in one controlled record. The value must identify the exact offered model where bore, Cv, torque or passage geometry is an approval point.<\/p>\n<h2 id=\"minimum-approval-record\">Minimum Approval Record<\/h2>\n<div class=\"raymonvalve-table-wrap\" tabindex=\"0\" role=\"region\" aria-label=\"Minimum approval data and supplier evidence matrix\">\n<table>\n<thead>\n<tr>\n<th scope=\"col\">Approval field<\/th>\n<th scope=\"col\">Required supplier or project evidence<\/th>\n<th scope=\"col\">Why it changes the decision<\/th>\n<\/tr>\n<\/thead>\n<tbody>\n<tr>\n<td>Pipe ID basis<\/td>\n<td>NPS\/DN, schedule and actual inside diameter<\/td>\n<td>Defines the adjoining passage used for comparison<\/td>\n<\/tr>\n<tr>\n<td>Minimum valve bore<\/td>\n<td>Dimension on the exact offered-model drawing<\/td>\n<td>Identifies the smallest stated passage<\/td>\n<\/tr>\n<tr>\n<td>Flow capacity<\/td>\n<td>Fully open Cv for the offered size, class and port<\/td>\n<td>Supports normalized pressure-drop review<\/td>\n<\/tr>\n<tr>\n<td>Operating cases<\/td>\n<td>Minimum, normal and maximum flow with fluid data<\/td>\n<td>Prevents approval at one convenient condition<\/td>\n<\/tr>\n<tr>\n<td>Allowable valve \u0394P<\/td>\n<td>Project limit or documented system allocation<\/td>\n<td>Determines whether a reduced port can be accepted<\/td>\n<\/tr>\n<tr>\n<td>Pig passage<\/td>\n<td>Pig envelope, sectional drawing and open-stop details<\/td>\n<td>Confirms the complete unobstructed route<\/td>\n<\/tr>\n<tr>\n<td>Torque and actuation<\/td>\n<td>Breakaway, running and ending torque with stated basis<\/td>\n<td>Supports gearbox or actuator review<\/td>\n<\/tr>\n<tr>\n<td>Materials and rating<\/td>\n<td>Material list and pressure-temperature data<\/td>\n<td>Confirms that flow geometry is not the only approval gate<\/td>\n<\/tr>\n<tr>\n<td>Testing and documents<\/td>\n<td>Included inspection, test and document scope<\/td>\n<td>Normalizes technical and commercial offers<\/td>\n<\/tr>\n<tr>\n<td>Deviations<\/td>\n<td>Explicit deviation schedule with resolution status<\/td>\n<td>Prevents unrecorded port or scope substitution<\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n<\/div>\n<div class=\"rv-note\"><strong>Standard scope:<\/strong> ASME B16.34 covers areas such as pressure-temperature ratings, materials, dimensions, examination, testing and marking for valves within its scope. It does not provide the offered valve\u2019s Cv or prove pig passage suitability.<\/div>\n<h2 id=\"technical-bid-normalization\">Technical Bid Normalization<\/h2>\n<p>Procurement should not compare the commercial totals until each quotation has been placed on the same technical basis. The following fields are particularly important where one supplier proposes full port and another proposes reduced port.<\/p>\n<div class=\"raymonvalve-table-wrap\" tabindex=\"0\" role=\"region\" aria-label=\"Ball valve port technical bid normalization table\">\n<table>\n<thead>\n<tr>\n<th scope=\"col\">Bid comparison field<\/th>\n<th scope=\"col\">Supplier A<\/th>\n<th scope=\"col\">Supplier B<\/th>\n<th scope=\"col\">Normalization requirement<\/th>\n<\/tr>\n<\/thead>\n<tbody>\n<tr>\n<td>Port designation<\/td>\n<td>State offered term<\/td>\n<td>State offered term<\/td>\n<td>Do not treat terminology as dimensional equivalence<\/td>\n<\/tr>\n<tr>\n<td>Minimum bore<\/td>\n<td>Enter millimetres<\/td>\n<td>Enter millimetres<\/td>\n<td>Compare with the same pipe ID and project minimum<\/td>\n<\/tr>\n<tr>\n<td>Exact-model Cv<\/td>\n<td>Enter offered value<\/td>\n<td>Enter offered value<\/td>\n<td>Use the same fluid and flow cases for \u0394P review<\/td>\n<\/tr>\n<tr>\n<td>Pigging confirmation<\/td>\n<td>Confirmed \/ excluded \/ conditional<\/td>\n<td>Confirmed \/ excluded \/ conditional<\/td>\n<td>Record the same pig envelope and direction<\/td>\n<\/tr>\n<tr>\n<td>Valve construction<\/td>\n<td>Floating\/trunnion, body pattern<\/td>\n<td>Floating\/trunnion, body pattern<\/td>\n<td>Identify changes that affect size, torque and price<\/td>\n<\/tr>\n<tr>\n<td>Materials and seats<\/td>\n<td>Offered specification<\/td>\n<td>Offered specification<\/td>\n<td>Confirm equal service and leakage basis<\/td>\n<\/tr>\n<tr>\n<td>Testing and documents<\/td>\n<td>Included scope<\/td>\n<td>Included scope<\/td>\n<td>Separate exclusions from price differences<\/td>\n<\/tr>\n<tr>\n<td>Actuation basis<\/td>\n<td>Torque and actuator data<\/td>\n<td>Torque and actuator data<\/td>\n<td>Compare the same differential pressure, fail action and margin<\/td>\n<\/tr>\n<tr>\n<td>Deviation status<\/td>\n<td>Open \/ closed<\/td>\n<td>Open \/ closed<\/td>\n<td>Do not award while critical port or pigging deviations remain open<\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n<\/div>\n<div class=\"rv-warning\"><strong>Commercial control:<\/strong> a lower reduced-port price is not a saving if the offer fails the required pressure-drop, pigging or future-throughput condition. Technical equivalence should be established before commercial ranking.<\/div>\n<h2 id=\"rfq-checklist\">Ball Valve Port and Flow RFQ Checklist<\/h2>\n<figure class=\"rv-wide\"><img loading=\"lazy\" decoding=\"async\" src=\"https:\/\/raymonvalve.com\/wp-content\/uploads\/2026\/07\/ball-valve-bore-flow-rfq-checklist-v2.webp\" alt=\"Ball valve bore flow and pigging RFQ checklist\" width=\"1200\" height=\"900\" data-image-status=\"live-verified\" title=\"\">\n<figcaption>Revised RFQ checklist with safe text margins and a normalized set of process, piping, valve, pigging and supplier-evidence inputs.<\/figcaption>\n<\/figure>\n<p>A normalized RFQ should define the following groups:<\/p>\n<ul>\n<li><strong>Function and service:<\/strong> valve duty, medium, phase, flow range, pressure, temperature, viscosity, solids and fouling.<\/li>\n<li><strong>Piping:<\/strong> NPS\/DN, schedule, actual pipe ID, end connection and adjacent transitions.<\/li>\n<li><strong>Port performance:<\/strong> port requirement, minimum unobstructed bore, exact-model Cv and allowable valve \u0394P.<\/li>\n<li><strong>Pigging:<\/strong> pig type, maximum envelope, required clearance and travel direction.<\/li>\n<li><strong>Construction:<\/strong> floating\/trunnion design, pressure class, materials, seats and seals.<\/li>\n<li><strong>Operation:<\/strong> manual, gear or actuator method plus exact torque data where applicable.<\/li>\n<li><strong>Evidence:<\/strong> GA drawing, sectional drawing, test scope, documents and written pigging confirmation.<\/li>\n<li><strong>Commercial control:<\/strong> explicit technical deviations and exclusions.<\/li>\n<\/ul>\n<h2 id=\"final-selection\">Decision Summary<\/h2>\n<p><strong>Use a verified full-port direction<\/strong> when pigging, minimum passage, low pressure loss or cleaning-device passage is mandatory. <strong>Accept a reduced-port direction only when<\/strong> pigging is excluded and the exact-model Cv, calculated pressure drop and local velocity remain within the project limits.<\/p>\n<div class=\"rv-hold\"><strong>Hold technical approval when:<\/strong> the minimum bore, exact-model Cv, pipe schedule, allowable pressure drop, pig envelope, passage drawing, critical deviation status or required actuator torque data is missing.<\/div>\n<div class=\"rv-quote\">Do not approve a port designation. Approve a documented bore, verified flow capacity and confirmed service condition.<\/div>\n<section class=\"rv-cta\" aria-labelledby=\"request-review\">\n<h2 id=\"request-review\">Request Ball Valve Port and Flow Review<\/h2>\n<p>Send the project datasheet, piping information and supplier offer for a preliminary port-design review. The review can identify missing bore, Cv, pigging and bid-normalization data before technical approval.<\/p>\n<ul>\n<li>Medium and phase<\/li>\n<li>Flow range<\/li>\n<li>Operating and design pressure<\/li>\n<li>Operating and design temperature<\/li>\n<li>Allowable valve pressure drop<\/li>\n<li>Pipe size, schedule and inside diameter<\/li>\n<li>Valve size and pressure class<\/li>\n<li>Required minimum bore<\/li>\n<li>Pig type and maximum OD<\/li>\n<li>Solids, viscosity and fouling conditions<\/li>\n<li>End connection and actuation method<\/li>\n<li>Required drawings, tests and documents<\/li>\n<\/ul>\n<a class=\"rv-button\" href=\"https:\/\/raymonvalve.com\/contact\/\">Request Port and Flow Review<\/a>\n<p class=\"rv-small-note\">Raymon Valve can review the completeness and consistency of submitted data. Final hydraulic approval and project acceptance remain with the responsible project engineering team.<\/p>\n<p class=\"rv-small-note\">Final selection remains subject to the complete datasheet, piping specification, offered-model information and project engineering approval.<\/p>\n<\/section>\n<section class=\"rv-faq\" aria-labelledby=\"faq-heading\">\n<h2 id=\"faq-heading\">Frequently Asked Questions<\/h2>\n<details>\n<summary>Is a full port ball valve the same as a full bore ball valve?<\/summary>\n<div>\n<p>The terms are often used for the same general design direction, but buyers should rely on the stated minimum bore and offered-model drawing rather than terminology alone.<\/p>\n<\/div>\n<\/details><details>\n<summary>Does a full port ball valve have zero pressure drop?<\/summary>\n<div>\n<p>No. A full port design can reduce restriction compared with a smaller-bore alternative, but seats, body transitions and other internal geometry still produce pressure loss.<\/p>\n<\/div>\n<\/details><details>\n<summary>Can a pig pass through every full port ball valve?<\/summary>\n<div>\n<p>No. Passage depends on the minimum unobstructed bore, seat geometry, end transitions, fully open alignment and the dimensions and flexibility of the actual pig.<\/p>\n<\/div>\n<\/details><details>\n<summary>When is a reduced port ball valve acceptable?<\/summary>\n<div>\n<p>It may be acceptable when pigging is not required and calculations confirm that pressure drop, local velocity and total system performance remain within project limits.<\/p>\n<\/div>\n<\/details><details>\n<summary>Does reduced port always mean lower cost and torque?<\/summary>\n<div>\n<p>No. Cost and torque also depend on valve construction, pressure class, materials, seats, differential pressure, temperature and operating conditions.<\/p>\n<\/div>\n<\/details><details>\n<summary>What should an RFQ state besides full port or reduced port?<\/summary>\n<div>\n<p>The RFQ should state the required minimum bore, pipe schedule, flow rate, allowable pressure drop, exact-model Cv requirement, pig data, materials, pressure class, operation method and required drawings.<\/p>\n<\/div>\n<\/details><details>\n<summary>Can a reduced port valve be used with solids?<\/summary>\n<div>\n<p>Possibly, but the decision requires review of particle size, concentration, velocity, erosion, blockage, seat design and cleaning requirements.<\/p>\n<\/div>\n<\/details><details>\n<summary>Is a full port valve always the better choice?<\/summary>\n<div>\n<p>No. Full port can be justified by pressure-drop, bore-continuity or pigging requirements, but it may add size, weight or cost without meaningful system benefit in some duties.<\/p>\n<\/div>\n<\/details><\/section>\n<section class=\"rv-engineering-note\" aria-labelledby=\"engineering-note-heading\">\n<h2 id=\"engineering-note-heading\" class=\"rv-no-top-margin\">Engineering Note and Limits<\/h2>\n<ul>\n<li>This page provides preliminary comparison and RFQ guidance, not final hydraulic sizing.<\/li>\n<li>No Raymon Valve product-specific Cv, bore, torque, weight, pressure-drop or cost values are assumed.<\/li>\n<li>Liquid, gas, steam, viscous, slurry and multiphase services may require different calculation methods.<\/li>\n<li>Pigging approval requires the actual pig envelope and offered-valve passage drawing.<\/li>\n<li>Mention of API, ISO or ASME standards does not prove that a specific product is certified or suitable.<\/li>\n<li>Material, seat and actuator selection require separate project data and manufacturer confirmation.<\/li>\n<li>Supplier evidence should reference the exact offered model; general catalog statements are insufficient where bore, Cv, torque or pigging is an approval point.<\/li>\n<\/ul>\n<p>For company and supply information, see <a href=\"https:\/\/raymonvalve.com\/about-us\/\">About Raymon Valve<\/a>.<\/p>\n<\/section>\n<section class=\"rv-references\" aria-labelledby=\"reference-heading\">\n<h2 id=\"reference-heading\">Official Reference Scope<\/h2>\n<ul>\n<li><a href=\"https:\/\/www.api.org\/products-and-services\/api-monogram-and-apiqr\/latest-updates\" target=\"_blank\" rel=\"noopener noreferrer nofollow\">API Monogram and APIQR latest updates<\/a> \u2014 current API Specification 6D addenda and errata status.<\/li>\n<li><a href=\"https:\/\/www.iso.org\/standard\/86822.html\" target=\"_blank\" rel=\"noopener noreferrer nofollow\">ISO 14313:2025 \u2014 Pipeline valves<\/a> \u2014 official scope for specified oil and gas pipeline valve requirements.<\/li>\n<li><a href=\"https:\/\/www.asme.org\/codes-standards\/find-codes-standards\/b16-34-valves-flanged-threaded-welding-end\" target=\"_blank\" rel=\"noopener noreferrer nofollow\">ASME B16.34 \u2014 Valves, Flanged, Threaded and Welding End<\/a> \u2014 official standard scope.<\/li>\n<li><a href=\"https:\/\/www.emerson.com\/en\/final-control\/catalog\/products-and-software\/valves\/control-valves\/control-valve-handbook\" target=\"_blank\" rel=\"noopener noreferrer nofollow\">Emerson Control Valve Handbook<\/a> \u2014 official liquid and compressible-flow sizing background and calculation boundaries.<\/li>\n<\/ul>\n<\/section>\n<\/div>\n<\/article>\n<p><script type=\"application\/ld+json\">{\n  \"@context\": \"https:\/\/schema.org\",\n  \"@graph\": [\n    {\n      \"@type\": \"Organization\",\n      \"@id\": \"https:\/\/raymonvalve.com\/#organization\",\n      \"name\": \"Raymon Valve\",\n      \"url\": \"https:\/\/raymonvalve.com\/\"\n    },\n    {\n      \"@type\": \"WebSite\",\n      \"@id\": \"https:\/\/raymonvalve.com\/#website\",\n      \"url\": \"https:\/\/raymonvalve.com\/\",\n      \"name\": \"Raymon Valve\",\n      \"publisher\": {\n        \"@id\": \"https:\/\/raymonvalve.com\/#organization\"\n      },\n      \"inLanguage\": \"en\"\n    },\n    {\n      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