API 16C Kill Manifold for Oil Field

**Kill Manifold** **Model No.:** Kill Manifold **Temp. Class:** P~U **Production Specification Level:** PSL1~PSL4 **Performance Requirement:** PR1, PR2 **Transport Package:** Wooden Case **Origin:** Jiangsu, China **HS Code:** 8431431000 --- **Kill Manifold** **1. Application** The kill manifold is a critical component used in oil and gas drilling operations. It is designed to help control well pressure by allowing the injection of heavy drilling fluid into the wellbore when there's an increase in wellhead pressure. This helps balance the bottom hole pressure and prevents well kicks or blowouts. Additionally, the kill manifold can be used to release excess pressure through blowdown lines or inject water and fire suppressants into the well. The check valves on the system ensure that fluids only flow in one direction, preventing backflow during critical operations like well killing or other essential procedures. **2. Structure** The kill manifold is typically composed of check valves, gate valves, pressure gauges, and piping. One end connects to the drilling spool, while the other is linked to the pumping system. Designed according to API 16C standards, it is often used in conjunction with a choke manifold for enhanced well control. Available in various pressure ratings—2000 psi, 3000 psi, 5000 psi, and 10000 psi—it is suitable for a wide range of drilling environments. **Product Image:** ![API 16C Kill Manifold for Oil Field](http://i.bosscdn.com/uploads/f9/c1/ae/a217ca40c2520cb24123dd9d50.jpg) This equipment plays a vital role in ensuring safe and efficient drilling operations, especially in high-pressure environments where precise control is essential. Whether for routine operations or emergency scenarios, the kill manifold is a reliable and essential tool in the oil and gas industry.

LED Heat Sink

LED heat sink is a device used to dissipate heat generated by LED lights. LEDs produce a significant amount of heat during operation, which can lead to reduced performance and lifespan. The heat sink is designed to absorb and dissipate this heat, keeping the LED cool and operating at optimal levels.There are several types of LED heat sinks available, including passive and active cooling systems. Passive cooling systems rely on natural convection to dissipate heat, while active systems use fans or other cooling mechanisms to enhance heat dissipation.The design of a heat sink is critical to its effectiveness. Factors such as size, shape, and material can all impact its ability to dissipate heat. Common materials used for LED heat sinks include aluminum alloy, copper, and graphite.
Overall, LED heat sinks are an essential component of LED lighting systems, helping to ensure optimal performance and longevity.

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