{"id":8985,"date":"2018-10-15T11:03:17","date_gmt":"2018-10-15T08:03:17","guid":{"rendered":"https:\/\/valve.tr\/safety-valves\/"},"modified":"2024-12-25T16:19:33","modified_gmt":"2024-12-25T13:19:33","slug":"safety-valves","status":"publish","type":"page","link":"https:\/\/valve.tr\/en\/safety-valves\/","title":{"rendered":"Safety Valves"},"content":{"rendered":"[vc_row type=”in_container” full_screen_row_position=”middle” column_margin=”default” column_direction=”default” column_direction_tablet=”default” column_direction_phone=”default” scene_position=”center” text_color=”dark” text_align=”left” row_border_radius=”none” row_border_radius_applies=”bg” overlay_strength=”0.3″ gradient_direction=”left_to_right” shape_divider_position=”bottom” bg_image_animation=”none”][vc_column column_padding=”no-extra-padding” column_padding_tablet=”inherit” column_padding_phone=”inherit” column_padding_position=”all” column_element_spacing=”default” background_color_opacity=”1″ background_hover_color_opacity=”1″ column_shadow=”none” column_border_radius=”none” column_link_target=”_self” gradient_direction=”left_to_right” overlay_strength=”0.3″ width=”2\/3″ tablet_width_inherit=”default” tablet_text_alignment=”default” phone_text_alignment=”default” bg_image_animation=”none” border_type=”simple” column_border_width=”none” column_border_style=”solid”][vc_column_text]\n

DIN Safety Valves<\/h2>\n\n\n\n\n\n\n\n
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Ingredients :<\/p>\n<\/td>\n

Steel, Stainless Steel, Bronze, Monel, Hastelloy, Duplex, Super Duplex <\/span><\/td>\n<\/tr>\n
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Connection :<\/p>\n<\/td>\n

Flanged, Threaded<\/span><\/td>\n<\/tr>\n
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Temperature :<\/p>\n<\/td>\n

(-200 \u00b0C) -( +550 \u00b0C)<\/span><\/td>\n<\/tr>\n
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Nominal Diameter :<\/p>\n<\/td>\n

DN 15 -DN 200<\/span><\/td>\n<\/tr>\n
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Rated Pressure:<\/p>\n<\/td>\n

PN 16 – PN 40<\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n

<\/h2>\n

ANSI Safety Valves<\/h2>\n\n\n\n\n\n\n\n
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Ingredients :<\/p>\n<\/td>\n

Steel, Stainless Steel, Monel, Hastelloy, Duplex, Super Duplex, <\/span><\/td>\n<\/tr>\n
\n

Connection :<\/p>\n<\/td>\n

Flanged, Threaded<\/span><\/td>\n<\/tr>\n
\n

Temperature :<\/p>\n<\/td>\n

max. (+550 \u00b0C) <\/span><\/td>\n<\/tr>\n
\n

Nominal Diameter :<\/p>\n<\/td>\n

1\/2″ x 3\/4″ up to 12″ x 16″<\/span><\/td>\n<\/tr>\n
\n

Rated Pressure:<\/p>\n<\/td>\n

Class 150 \u00f7 2500#, Class 150 \u00f7 300#<\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n

<\/h3>\n[\/vc_column_text][\/vc_column][vc_column column_padding=”padding-1-percent” column_padding_tablet=”inherit” column_padding_phone=”inherit” column_padding_position=”all” column_element_spacing=”default” background_color_opacity=”1″ background_hover_color_opacity=”1″ column_shadow=”none” column_border_radius=”none” column_link_target=”_self” gradient_direction=”left_to_right” overlay_strength=”0.3″ width=”1\/3″ tablet_width_inherit=”default” tablet_text_alignment=”default” phone_text_alignment=”default” bg_image_animation=”none” border_type=”simple” column_border_width=”none” column_border_style=”solid”][\/vc_column][\/vc_row][vc_row type=”in_container” full_screen_row_position=”middle” column_margin=”default” column_direction=”default” column_direction_tablet=”default” column_direction_phone=”default” scene_position=”center” text_color=”dark” text_align=”left” row_border_radius=”none” row_border_radius_applies=”bg” overlay_strength=”0.3″ gradient_direction=”left_to_right” shape_divider_position=”bottom” bg_image_animation=”none”][vc_column column_padding=”no-extra-padding” column_padding_tablet=”inherit” column_padding_phone=”inherit” column_padding_position=”all” column_element_spacing=”default” background_color_opacity=”1″ background_hover_color_opacity=”1″ column_shadow=”none” column_border_radius=”none” column_link_target=”_self” gradient_direction=”left_to_right” overlay_strength=”0.3″ width=”1\/1″ tablet_width_inherit=”default” tablet_text_alignment=”default” phone_text_alignment=”default” bg_image_animation=”none” border_type=”simple” column_border_width=”none” column_border_style=”solid”][vc_column_text]Purpose and Function of Safety Valves<\/strong><\/p>\n

The primary purpose of a safety valve is the protection of life, property and the environment. A safety valve is designed to relieve excess pressure from vessels or equipment and to prevent further release of fluid and reseal after normal conditions have been restored. <\/p>\n

A safety valve is a safety valve and in many cases the last line of defense. It is important to ensure that the safety valve can operate at all times and under all conditions. A safety valve is not a process valve or pressure regulator and should not be misused as such. It should only work for one purpose: overpressure protection. <\/p>\n

 <\/p>\n

Causes of overpressure in a system<\/strong><\/p>\n

There are several reasons why the pressure in a vessel or system may exceed a predetermined limit. API Standard 521\/ISO 23251 Sec. 4 provides detailed guidance on the causes of overpressure. <\/p>\n

 <\/p>\n

The most common ones:<\/h2>\n

Blockage of the discharge process Exposure to external fire, often referred to as a “Fire Condition” Thermal Expansion Chemical reaction Heat exchanger tube rupture Cooling system failure Each of the events listed above can occur separately and in isolation from the other. They can also occur at the same time. Each cause of overpressure will also create a different mass or volume flow to be relieved, e.g. small mass flow for thermal expansion and large mass flow in case of chemical reaction. It is the responsibility of the user to determine the worst case scenario for sizing and selection of a suitable pressure relief device.<\/p>\n

 <\/p>\n

Safety Valve Types and functions<\/strong><\/p>\n

A wide range of safety valves are available to meet the many different applications and performance criteria demanded by different industries. In addition, national standards define many different types of safety valves. ASME standard I and ASME standard VIII for boiler and pressure vessel applications and the ASME\/ANSI PTC 25.3 standard for safety valves and relief valves provide the following definition. These standards define the different types of safety valves used as well as specifying performance characteristics: <\/p>\n

 <\/p>\n

ASME I Valve – Describes a safety relief valve complying with the requirements of Section I of the ASME pressure vessel code for boiler applications, which will open at 3% overpressure and close within 4%. It will usually have two blowdown rings and be identified by the National Board ‘V’ stamp. ASME VIII Valve – A safety relief valve complying with the requirements of Section VIII of the ASME pressure vessel code for pressure vessel applications, which will open at 10% overpressure and close at 7%. Identified by the National Board ‘UV’ stamp. <\/p>\n

 <\/p>\n

Standard safety valve – A valve which, after opening, reaches the degree of lift required for the mass flow rate to be discharged within a pressure rise of not more than 10%. (The valve is characterized by a pop-type action and is sometimes known as high lift). <\/h5>\n
<\/pre>\n

Full Lift Safety Valve<\/strong> – A safety valve that opens rapidly after lifting has started, within a pressure rise of 5% up to full lift as limited by design. The amount of lift to rapid opening (proportional range) must not exceed 20%. Direct Loaded Relief Valve<\/strong> – A relief valve where the opening force under the valve disc is opposed by a closing force, such as a spring or weight. Proportional Relief Valve<\/strong> – A relief valve that opens more or less regularly according to an increase in pressure. Sudden opening in the 10% lift range will not occur without an increase in pressure. After opening at a pressure of no more than 10%, these relief valves provide the necessary lift of the mass flow to be discharged. Diaphragm Safety Valve<\/strong> – A directly loaded safety valve in which the linear moving and rotating elements and springs are protected against the effects of fluid by a diaphragm Bellows Safety Valve<\/strong> – A directly loaded safety valve in which the sliding and (partially or fully) rotating elements and springs are protected against the effects of fluid by a bellows. The bellows may be of a design to compensate for the effects of back pressure. Controlled safety valve<\/strong> – Consists of a main valve and a control device. Also includes direct acting safety valves with additional loading, where an additional force increases the closing force until the set pressure is reached. <\/p>\n

Difference between Safety Valve and Safety Relief Valve;<\/h4>\n

A relief valve is a valve designed to control the pressure in a vessel or system to a certain set level. A safety valve, on the other hand, is a valve used to relieve excess pressure from a vessel or equipment when the set pressure exceeds a certain predetermined limit.[\/vc_column_text][\/vc_column][\/vc_row][vc_row type=”full_width_background” full_screen_row_position=”middle” column_margin=”default” column_direction=”default” column_direction_tablet=”default” column_direction_phone=”default” bg_color=”#f7f7f7″ scene_position=”center” top_padding=”100″ bottom_padding=”100″ text_color=”dark” text_align=”left” row_border_radius=”none” row_border_radius_applies=”bg” overlay_strength=”0.3″ gradient_direction=”left_to_right” shape_divider_position=”bottom” bg_image_animation=”none”][vc_column column_padding=”no-extra-padding” column_padding_tablet=”inherit” column_padding_phone=”inherit” column_padding_position=”all” column_element_spacing=”default” background_color_opacity=”1″ background_hover_color_opacity=”1″ column_shadow=”none” column_border_radius=”none” column_link_target=”_self” gradient_direction=”left_to_right” overlay_strength=”0.3″ width=”1\/1″ tablet_width_inherit=”default” tablet_text_alignment=”default” phone_text_alignment=”default” bg_image_animation=”none” border_type=”simple” column_border_width=”none” column_border_style=”solid”][vc_column_text]\n

Frequently Asked Questions<\/h2>\n[\/vc_column_text][toggles style=”minimal”][toggle color=”Default” title=”What is a Safety Valve?”][vc_column_text]The primary purpose of a safety valve is the protection of life, property and the environment. A safety valve is designed to relieve excess pressure from vessels or equipment and to prevent further release of fluid and reseal after normal conditions have been restored.[\/vc_column_text][\/toggle][toggle color=”Default” title=”Where are Safety Valves used?”][vc_column_text]Safety valves are used in almost every process and plant for overpressure protection.[\/vc_column_text][\/toggle][toggle color=”Default” title=”What are the types of Safety Valves?”][vc_column_text]Controlled safety valve, Bellows safety valve, Diaphragm safety valve, Proportional safety valve, Direct loading safety valve, Full Lift safety valve, Standard safety valve, ASME VIII valve, ASME I valve.[\/vc_column_text][\/toggle][toggle color=”Default” title=”Why is the Safety Valve different?”][vc_column_text]\n
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A relief valve is a valve designed to control the pressure in a vessel or system to a certain set level. A safety valve, on the other hand, is a valve used to relieve excess pressure from a vessel or equipment when the set pressure exceeds a certain predetermined limit. <\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n

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