Magee Joseph W, Deal Renee J, Blanco John C
National Institute of Standards and Technology, Boulder, CO 80303.
University of Colorado, Boulder, CO 80303.
J Res Natl Inst Stand Technol. 1998 Jan-Feb;103(1):63-75. doi: 10.6028/jres.103.003. Epub 1998 Feb 1.
A high-temperature adiabatic calorimeter has been developed to measure the constant-volume specific heat capacities ( ) of both gases and liquids, especially fluids of interest to emerging energy technologies. The chief design feature is its nearly identical twin bomb arrangement, which allows accurate measurement of energy differences without large corrections for energy losses due to thermal radiation fluxes. Operating conditions for the calorimeter cover a range of temperatures from 250 K to 700 K and at pressures up to 20 MPa. Performance tests were made with a sample of twice-distilled water. Heat capacities for water were measured from 300 K to 420 K at pressures to 20 MPa. The measured heat capacities differed from those calculated with an independently developed standard reference formulation with a root-mean-square fractional deviation of 0.48 %.
已开发出一种高温绝热量热计,用于测量气体和液体(特别是新兴能源技术感兴趣的流体)的定容比热容( )。其主要设计特点是几乎完全相同的双弹体结构,这使得能够精确测量能量差异,而无需对热辐射通量造成的能量损失进行大幅校正。该量热计的运行条件涵盖250 K至700 K的温度范围以及高达20 MPa的压力。使用二次蒸馏水样品进行了性能测试。在高达20 MPa的压力下,测量了300 K至420 K温度范围内水的比热容。测量得到的比热容与使用独立开发的标准参考公式计算得到的结果不同,均方根分数偏差为0.48%。