首页> 外文会议>2002 ASME International Mechanical Engineering Congress and Exposition , Nov 17-22, 2002, New Orleans, Louisiana >NATURAL CONVECTION IN A SQUARE ENCLOSURE WITH A PARTIALLY HEATED WALL SECTION COVERED BY A BLIND-LIKE ATTACHMENT IN WHICH THERE IS A LINEARLY VARYING HEAT GENERATION RATE
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NATURAL CONVECTION IN A SQUARE ENCLOSURE WITH A PARTIALLY HEATED WALL SECTION COVERED BY A BLIND-LIKE ATTACHMENT IN WHICH THERE IS A LINEARLY VARYING HEAT GENERATION RATE

机译:方形围护结构中的自然对流,其中壁加热部分线性变化,而盲区则覆盖了部分加热的墙面

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Natural convective heat transfer across a square enclosure with one vertical wall partially heated to a uniform high temperature and with the opposite vertical wall cooled to a lower uniform temperature has been numerically investigated. The remaining wall sections are adiabatic. The heated wall section is covered at the top and in the front by thin straight walls that offer no resistance to heat transfer. There is heat generation in vertical portion of this covering wall that is parallel to the heated wall section. The present work was undertaken as part of a wider study of the effect of window coverings on the heat transfer rate from windows, particularly for the case where the window is hotter than the room air. The situation being considered here is an approximate model of a window covered by a plane (roller) blind. In such situations there is often effectively heat generation in the blind as a result of the absorption of solar radiation. However, because of the sun angle and the effect of building overhangs, this heat generation is often not uniform along the blind. To study this effect, the case where there is a linearly varying rate of heat generation in the barrier (the "blind ") with the highest rate of heat generation at the bottom of the barrier and with no heat generation at the top has been considered. The flow in the enclosure has been assumed to be laminar and two-dimensional. Fluid properties have been assumed constant except for the density change with temperature that gives rise to the buoyancy forces. The governing equations have been written in dimensionless form and have been solved using a finite-element method. The solution has the Rayleigh number, the Prandtl number, the dimensionless distance of the barrier from the hot vertical surface, the mean dimensionless rate of heat generation in the barrier, and the dimensionless size of the heated wall section as parameters Results have only been obtained for a Prandtl number of 0.7. The effect of the other dimensionless variables on the heat transfer rate from the hot wall section has then been numerically determined.
机译:数值研究了一个正方形壁上的自然对流传热,其中一个垂直壁被部分加热到一个均匀的高温,而相对的垂直壁被冷却到一个较低的均匀温度。其余壁部分是绝热的。加热的壁部分在顶部和前面被薄的直壁覆盖,这些壁对传热没有阻力。在该覆盖壁的垂直部分中平行于加热的壁部分产生热量。这项工作是对窗户覆盖物对窗户传热速率影响的更广泛研究的一部分,特别是对于窗户比室内空气更热的情况。这里考虑的情况是被平面(卷帘)遮盖的窗户的近似模型。在这种情况下,由于吸收了太阳辐射,通常会在百叶窗中有效地产生热量。但是,由于太阳角度和建筑物悬挑的影响,这种热量的产生通常沿盲区不均匀。为了研究这种效果,已经考虑了在屏障(“盲孔”)中产生线性变化的热量的情况,其中在屏障的底部产生热量的速率最高,而在顶部没有产生热量的情况。 。假定外壳中的流动是层流和二维的。流体特性被假定为恒定的,除了密度随温度的变化会引起浮力。控制方程已以无量纲形式编写,并已使用有限元法求解。该解决方案具有Rayleigh数,Prandtl数,屏障与热垂直表面的无量纲距离,屏障中热量的平均无量纲发生率以及加热壁部分的无量纲尺寸作为参数结果仅获得了结果Prandtl值为0.7。然后,通过数值确定了其他无量纲变量对热壁部分传热速率的影响。

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