ログインしてください

文献・情報検索システム

日本語

ENGLISH

ヘルプ

ログインしてください

  • 詳細情報

Modeling the Kinetic and Thermal Interaction of UWS Droplets Impinging on a Flat Plate at Different Exhaust Gas Conditions

書誌事項

著者(英)1) Antonello Nappi, 2) Gianluca Montenegro, 3) Angelo Onorati, 4) Augusto Della Torre, 5) Panayotis Dimopoulos Eggenschwiler
勤務先(英)1) Politecnico di Milano, 2) Politecnico di Milano, 3) Politecnico di Milano, 4) Politecnico di Milano, 5) Empa
抄録(英)The selective catalytic reduction has seen widespread adoption as the best technology to reduce the NOx emissions from internal combustion engines, particularly for Diesels. This technology uses ammonia as a reducing agent, which is obtained injecting an ammonia carrier into the exhaust gas stream. The dosing of the ammonia carrier, usually AdBlue, is the major concern during the design and engine calibration phases, since the interaction between the injected liquid and the components of the exhaust system can lead to the undesired formation of solid deposits. To avoid this, the thermal and kinematic interaction between the spray and the components of the after treatment system (ATS) must be modeled accurately. In this work, the authors developed a Conjugate Heat Transfer (CHT) framework to model the kinetic and thermal interaction among the spray, the eventual liquid layer and the pipe walls. The Nukiyama curve has been embedded in the calculation of the heat flux between the droplet and the walls to limit the heat transfer in the proximity of the Leidenfrost point and in the transition region. To validate this model, an experimental data set was provided by EMPA (CH) and used for comparison with calculated values. The measurement of the thermal footprint of the spray have been performed on the back of a thin plate where the spray impinges. Several injections have been considered with the intent of showing the transition to the different interaction regimes. The simulations performed show that after the initial cooling of the wall, due to impingement, a liquid film is formed, which is then dragged along the plate. As the number of injection progresses, the effect of the transition between the different evaporation regimes translates into high temperature gradients on the back of the plate. The comparison with the experimental data both in terms of temperature and temperature gradient shows a good agreement with the experiments, showing the capabilities of the model developed to predict the temperature drop.

翻訳

検索について

閉じる

検索ボックスの使い方

検索条件は最大5件まで入力可能です。検索ボックスの数は右側の「+」「−」ボタンで増減させることができます。
一つの検索ボックス内に、複数の語句をスペース(全角/半角)区切りで入力した場合、入力した語句の“すべてを含む”データが検索されます(AND検索)。
例)X(スペース)Y →「XかつY(を含む)」

「AND」「OR」プルダウンの使い方

「AND」を指定すると、前後の検索ボックスに入力された語句の“双方を含む”データが検索されます。また、「OR」を指定すると、前後の検索ボックスに入力された語句の“いずれかを含む”データが検索されます。
例)X AND Y →「XかつY(を含む)」  X OR Z →「XまたはZ(を含む)」
AND検索とOR検索が混在する場合は、OR検索が優先されます。
例)X AND Y OR Z → X AND (Y OR Z)
AND検索と複数のOR検索が混在する場合も、OR検索が優先されます。
例)W AND X OR Y OR Z → W AND (X OR Y OR Z)

検索フィルタの使い方

検索結果の件数が多すぎる場合など、さらに絞り込みしたいときに「検索フィルタ」を使います。各項目にチェックを入れると、その項目が含まれるデータのみに検索結果が絞り込まれます。
各項目後ろの「()」内の数字は、その項目が含まれるデータの件数です。

検索のコツ

著者名で検索するときは、「自動車 太郎」のように、姓名をスペースで区切って入力してください。