辽宁石油化工大学学报
遼寧石油化工大學學報
료녕석유화공대학학보
JOURNAL OF LIAONING UNIVERSITY OF PETROLEUM & CHEMICAL TECHNOLOGY
2014年
5期
28-31
,共4页
原油物性参数%安全停输时间%起始油温%环境温度%保温层厚度
原油物性參數%安全停輸時間%起始油溫%環境溫度%保溫層厚度
원유물성삼수%안전정수시간%기시유온%배경온도%보온층후도
Crude oil physical parameters%Safe shutdown time%Start oil temperature%Ambient temperature%Insulation thickness
结合裸露管线的热力特性,建立管道停输时非稳态传热模型,分别计算了原油物性参数随温度变化和不随温度变化两种条件下的安全停输时间。结果表明,在原油物性参数不随温度变化的条件下所得结果与实际停输情况有很大差别,因此应考虑物性参数随温度的变化。在原油物性参数随温度变化的情况下,改变影响停输温降的因素如停输起始油温、环境温度、保温层厚度,计算了不同条件下的安全停输时间。计算结果表明,停输起始油温以及保温层厚度逐渐增大且增加幅度相同时,安全停输时间增加的幅度基本相同;外界环境温度逐渐升高且增加幅度相同时,安全停输时间的增长幅度越来越大。
結閤裸露管線的熱力特性,建立管道停輸時非穩態傳熱模型,分彆計算瞭原油物性參數隨溫度變化和不隨溫度變化兩種條件下的安全停輸時間。結果錶明,在原油物性參數不隨溫度變化的條件下所得結果與實際停輸情況有很大差彆,因此應攷慮物性參數隨溫度的變化。在原油物性參數隨溫度變化的情況下,改變影響停輸溫降的因素如停輸起始油溫、環境溫度、保溫層厚度,計算瞭不同條件下的安全停輸時間。計算結果錶明,停輸起始油溫以及保溫層厚度逐漸增大且增加幅度相同時,安全停輸時間增加的幅度基本相同;外界環境溫度逐漸升高且增加幅度相同時,安全停輸時間的增長幅度越來越大。
결합라로관선적열력특성,건립관도정수시비은태전열모형,분별계산료원유물성삼수수온도변화화불수온도변화량충조건하적안전정수시간。결과표명,재원유물성삼수불수온도변화적조건하소득결과여실제정수정황유흔대차별,인차응고필물성삼수수온도적변화。재원유물성삼수수온도변화적정황하,개변영향정수온강적인소여정수기시유온、배경온도、보온층후도,계산료불동조건하적안전정수시간。계산결과표명,정수기시유온이급보온층후도축점증대차증가폭도상동시,안전정수시간증가적폭도기본상동;외계배경온도축점승고차증가폭도상동시,안전정수시간적증장폭도월래월대。
Establishing an unsteady heat transfer model for the period of pipeline shutdown combined with the thermodynamic properties of exposed pipelines,calculating physical parameters of crude oil in two conditions which changed with temperature and never changed with temperature,the result of the latter condition had great difference with the actual shutdown situation. Therefore physical parameters changing with temperature should be considered.Based on physical parameters of crude oil changing with temperature,changed the factors affecting the shutdown temperature drop such as the shutdown starting oil temperature,ambient temperature and insulation thickness and calculating the safe shutdown time under different conditions. The results show that the growth rate of the safe shutdown time was basically the same with the gradual increasing of the initial oil temperature and the thickness of the insulating layer and the rate of increase was the same and the growth rate of safety shutdown time was increasing with the gradual increasing of ambient temperature and the rate of increase was the same.