Rittal > 实例探究 > 钻井船动力挑战:混合解决方案解决配电问题

钻井船动力挑战:混合解决方案解决配电问题

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 Drill ship power challenge: hybrid solution solves distribution issues - IoT ONE Case Study
适用行业
  • 海洋与航运
客户
Aspin Kemp & Associates
关于客户
Aspin Kemp & Associates (AKA) 是一家系统集成商,主要为海洋和近海行业提供创新产品、技术先进的服务、文档和世界一流的培训。
挑战

Aspin Kemp & Associates (AKA) 是一家总部位于爱德华王子岛蒙塔古的电力和控制系统制造商,其混合动力计划遇到了一个公司,这是第一个用于安装在瑞士近海公司 Transocean 运营的超深水钻井船上的混合动力钻井平台钻井承包商。由于现场改造是不可能的,并且任何改造的废料回收是不可接受的,因此外壳必须准备好安装。

解决方案

AKA 的解决方案——将柴油发电机与超级电容器耦合以解决配电网络中的问题——需要数十个工业外壳。中间电力存储系统以比过程使用或返回能量更快的速度吸收和输送能量。通过允许在没有主发电机连接的情况下运行来控制急停的危险。柴油机在不影响性能或需要“旋转储备”动力的情况下以高输出连续运行。

收集的数据
Emissions Rate, Fuel Consumption, Machine Performance, Per-Unit Maintenance Costs, Reportable Health and Safety Incidents
运营影响
  • [Cost Reduction - Maintenance]
    The desired enclosure system would improve reliability, save energy, reduce emissions, lower maintenance costs, enhance safety and support maritime regulations.
  • [Efficiency Improvement - Labor Safety]
    There was also a safety benefit. With fewer diesels in operation, there was a significant reduction in injuries and spills associated with fuel and other fluid handling, while smoother transitions in E-stops protected the workers from sudden engine stops.
  • [Efficiency Improvement - Operation]
    A common bus that allows some generators to remain in standby condition rather than in constant operation reduced hours of machine wear and fouling on each generator.

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